{"id":2562,"date":"2023-05-18T18:02:28","date_gmt":"2023-05-18T10:02:28","guid":{"rendered":"https:\/\/deptweb.cycu.edu.tw\/qic\/?page_id=2562"},"modified":"2025-06-12T08:32:53","modified_gmt":"2025-06-12T00:32:53","slug":"director-2","status":"publish","type":"page","link":"https:\/\/deptweb.cycu.edu.tw\/qic\/en\/personnel__trashed\/director-2\/","title":{"rendered":"Director"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-post\" data-elementor-id=\"2562\" class=\"elementor elementor-2562\" data-elementor-post-type=\"page\">\n\t\t\t\t\t\t<section class=\"elementor-section elementor-top-section elementor-element elementor-element-5b2abaa9 elementor-section-full_width elementor-section-height-min-height elementor-section-items-bottom elementor-section-stretched elementor-section-height-default\" data-id=\"5b2abaa9\" data-element_type=\"section\" data-settings=\"{&quot;background_background&quot;:&quot;classic&quot;,&quot;stretch_section&quot;:&quot;section-stretched&quot;}\">\n\t\t\t\t\t\t\t<div class=\"elementor-background-overlay\"><\/div>\n\t\t\t\t\t\t\t<div class=\"elementor-container elementor-column-gap-no\">\n\t\t\t\t\t<div class=\"elementor-column elementor-col-100 elementor-top-column elementor-element elementor-element-647a1f07\" data-id=\"647a1f07\" data-element_type=\"column\">\n\t\t\t<div class=\"elementor-widget-wrap elementor-element-populated\">\n\t\t\t\t\t\t<div class=\"elementor-element elementor-element-4793c714 elementor-widget elementor-widget-heading\" data-id=\"4793c714\" data-element_type=\"widget\" data-widget_type=\"heading.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t<h2 class=\"elementor-heading-title elementor-size-large\">DIrector of QIC<\/h2>\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t<section class=\"elementor-section elementor-top-section elementor-element elementor-element-63302a64 elementor-section-boxed elementor-section-height-default elementor-section-height-default\" data-id=\"63302a64\" data-element_type=\"section\">\n\t\t\t\t\t\t<div class=\"elementor-container elementor-column-gap-default\">\n\t\t\t\t\t<div class=\"elementor-column elementor-col-100 elementor-top-column elementor-element elementor-element-373b64f9\" data-id=\"373b64f9\" data-element_type=\"column\">\n\t\t\t<div class=\"elementor-widget-wrap elementor-element-populated\">\n\t\t\t\t\t\t<div class=\"elementor-element elementor-element-4a75687f elementor-widget-divider--view-line elementor-widget elementor-widget-divider\" data-id=\"4a75687f\" data-element_type=\"widget\" data-widget_type=\"divider.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t<div class=\"elementor-divider\">\n\t\t\t<span class=\"elementor-divider-separator\">\n\t\t\t\t\t\t<\/span>\n\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<div class=\"elementor-element elementor-element-32548461 elementor-widget elementor-widget-text-editor\" data-id=\"32548461\" data-element_type=\"widget\" data-widget_type=\"text-editor.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t<h2><img fetchpriority=\"high\" decoding=\"async\" src=\"https:\/\/deptweb.cycu.edu.tw\/qic\/wp-content\/uploads\/\u5f35\u8001\u5e2b.png\" alt=\"\" width=\"220\" height=\"318\" \/><\/h2><p>Ching-Ray, Chang Ph.D<\/p><p>IBM-NTU Q Hub Director<\/p><p>IEEE fellow, APS Fellow, RIEA member\u00a0<\/p><p>Chair Professor, Department of Physics, Chung Yuan Christian University<\/p><p>\u00a0<\/p><p style=\"border-style: solid; border-color: #d9d9e3; --tw-border-spacing-x: 0; --tw-border-spacing-y: 0; --tw-translate-x: 0; --tw-translate-y: 0; --tw-rotate: 0; --tw-skew-x: 0; --tw-skew-y: 0; --tw-scale-x: 1; --tw-scale-y: 1; --tw-scroll-snap-strictness: proximity; --tw-ring-offset-width: 0px; --tw-ring-offset-color: #fff; --tw-ring-color: rgba(59,130,246,0.5); --tw-ring-offset-shadow: 0 0 transparent; --tw-ring-shadow: 0 0 transparent; --tw-shadow: 0 0 transparent; --tw-shadow-colored: 0 0 transparent; margin-bottom: 1.25em; color: #374151; font-family: S\u00f6hne, ui-sans-serif, system-ui, -apple-system, 'Segoe UI', Roboto, Ubuntu, Cantarell, 'Noto Sans', sans-serif, 'Helvetica Neue', Arial, 'Apple Color Emoji', 'Segoe UI Emoji', 'Segoe UI Symbol', 'Noto Color Emoji'; font-size: 16px; font-style: normal; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; white-space: pre-wrap; background-color: #f7f7f8;\"><span style=\"color: #333333; font-family: \u5fae\u8edf\u6b63\u9ed1\u9ad4, 'Microsoft JhengHei', \u5fae\u8edf\u96c5\u9ed1\u9ad4, 'Microsoft YaHei', 'Open Sans', sans-serif; font-size: 20px; font-weight: 600; background-color: #ffffff;\">Director&#8217;s words:<br \/>\u00a0 After the establishment of quantum science by Europe in the early 20th century, it has driven a deeper understanding of everything in the universe. Quantum science differs significantly from many concepts in the macro world, such as &#8220;quantization&#8221; and &#8220;uncertainty principle,&#8221; causing not only significant changes in technology but also leading to much discussion in humanities and philosophy. The Industrial Revolution utilized mechanics and thermodynamics in physics to allow humanity to enjoy the fruits of mechanical power. The semiconductor revolution used electromagnetics and optics to create the digital world&#8217;s fruits. The quantum revolution aims to transform the classical Earth into a quantum Earth. Today, quantum computers are already on the cloud, and the golden period of quantum computer applications has emerged. The quantum Internet will also provide faster and safer endpoint connections. The push for a redistribution of the world&#8217;s wealth and power seems to be quietly activated again.<\/span><\/p><h2>\u00a0 The emerging metaverse uses innovative digital technologies to allow digital citizens to enter a virtual network world, engage in various real-world activities, realize imagination, and travel freely in various time and space. An ideal metaverse needs to instantly convey various sensations to all digital citizens of the metaverse. The quantum Internet is currently a necessary technology for exploring the metaverse comprehensively and is also the hope to once again promote the high-speed growth of human civilization. With a telescope, &#8220;space&#8221; can be developed, with a microscope, the &#8220;microcosm&#8221; can be explored, and quantum technology is the third lens of the world&#8217;s civilization.<\/h2><h2>\u00a0 The research and development of the Quantum Information Center at Chung Yuan Christian University will focus on the basic research and application of quantum technology and the metaverse and provide basic training and preparation for the Q-generation to enter relevant industries<br \/><span style=\"font-size: 18px; color: #595959;\">\u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0<\/span><\/h2><table width=\"90%\"><tbody><tr><th scope=\"row\">academic qualification<\/th><td valign=\"middle\" width=\"75%\"><span style=\"color: #374151; font-family: S\u00f6hne, ui-sans-serif, system-ui, -apple-system, 'Segoe UI', Roboto, Ubuntu, Cantarell, 'Noto Sans', sans-serif, 'Helvetica Neue', Arial, 'Apple Color Emoji', 'Segoe UI Emoji', 'Segoe UI Symbol', 'Noto Color Emoji'; font-size: 16px; font-style: normal; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; white-space: pre-wrap; background-color: #f7f7f8;\">Ph.D. in physics from the University of California, San Diego in 1988<\/span><\/td><\/tr><tr><th scope=\"row\" width=\"25%\">experiences<\/th><td align=\"center\"><ul><li><span style=\"color: #374151; font-family: S\u00f6hne, ui-sans-serif, system-ui, -apple-system, 'Segoe UI', Roboto, Ubuntu, Cantarell, 'Noto Sans', sans-serif, 'Helvetica Neue', Arial, 'Apple Color Emoji', 'Segoe UI Emoji', 'Segoe UI Symbol', 'Noto Color Emoji'; font-size: 16px; font-style: normal; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; white-space: pre-wrap; background-color: #f7f7f8;\">2022-present: Director of the Quantum Information Center, Chung Yuan Christian University<br \/>2020-present: Consultant at Hon Hai Research Institute<br \/>2019-present: Adjunct Professor, Department of Business Administration, Chung Yuan Christian University<br \/>2019-present: Director of the National Taiwan University-IBM Quantum Computing Center<br \/>1994-present: Professor, Department of Physics, National Taiwan University<br \/>2013\/06-2019\/01: Vice President for Academic Affairs, National Taiwan University<br \/>2017\/06-2017\/09: Acting President, National Taiwan University<br \/>2011-2013: Dean, College of Science, National Taiwan University<br \/>2008-2011: Director-General, Department of International Cooperation, National Science Council<br \/>2001-2007: Chairman, Department of Physics, National Taiwan University<br \/>1989-1994: Associate Professor, Department of Physics, National Taiwan University<br \/>1988-1989: Researcher, Materials Research Laboratories, Industrial Technology Research Institute<\/span><\/li><\/ul><\/td><\/tr><tr><th scope=\"row\">\u4e3b\u4efb\u7c21\u4ecb<\/th><td align=\"center\"><p>\u00a0\u00a0<span style=\"background-color: #f7f7f8; color: #374151; font-family: S\u00f6hne, ui-sans-serif, system-ui, -apple-system, 'Segoe UI', Roboto, Ubuntu, Cantarell, 'Noto Sans', sans-serif, 'Helvetica Neue', Arial, 'Apple Color Emoji', 'Segoe UI Emoji', 'Segoe UI Symbol', 'Noto Color Emoji'; font-size: 16px; font-style: normal; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; white-space: pre-wrap;\">Professor Chang Ching-Ray graduated from the Department of Physics at National Taiwan University in 1979. In 1988, he obtained a PhD in Physics from the University of California, San Diego and returned to the Industrial Technology Research Institute&#8217;s Magnetic Materials Group the same year. In February 1989, he joined National Taiwan University and has served as Vice President and Acting President of the university.<\/span><\/p><p style=\"border-style: solid; border-color: #d9d9e3; --tw-border-spacing-x: 0; --tw-border-spacing-y: 0; --tw-translate-x: 0; --tw-translate-y: 0; --tw-rotate: 0; --tw-skew-x: 0; --tw-skew-y: 0; --tw-scale-x: 1; --tw-scale-y: 1; --tw-scroll-snap-strictness: proximity; --tw-ring-offset-width: 0px; --tw-ring-offset-color: #fff; --tw-ring-color: rgba(59,130,246,0.5); --tw-ring-offset-shadow: 0 0 transparent; --tw-ring-shadow: 0 0 transparent; --tw-shadow: 0 0 transparent; --tw-shadow-colored: 0 0 transparent; margin-top: 1.25em; margin-bottom: 1.25em; color: #374151; font-family: S\u00f6hne, ui-sans-serif, system-ui, -apple-system, 'Segoe UI', Roboto, Ubuntu, Cantarell, 'Noto Sans', sans-serif, 'Helvetica Neue', Arial, 'Apple Color Emoji', 'Segoe UI Emoji', 'Segoe UI Symbol', 'Noto Color Emoji'; font-size: 16px; font-style: normal; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; white-space: pre-wrap; background-color: #f7f7f8;\">Since 1982, Professor Chang has been engaged in numerical research on micromagnetics. He is not only a founder of this field, but has also continuously promoted its relevant applications in the magnetic industry. He has made important contributions to both fundamental research and applied technology in the areas of flipping mechanisms and thermal disturbance. In recent years, his research has mainly focused on the spin transport mechanism in low-dimensional materials. Professor Chang has published over 280 professional papers and obtained more than 28 patents related to magnetism. He has been elected as a Fellow of the American Physical Society (APS) and the Institute of Electrical and Electronics Engineers (IEEE) for his outstanding academic achievements, as well as an Academician of the Russian International Academy of Engineering (RIAE).<\/p><p style=\"border-style: solid; border-color: #d9d9e3; --tw-border-spacing-x: 0; --tw-border-spacing-y: 0; --tw-translate-x: 0; --tw-translate-y: 0; --tw-rotate: 0; --tw-skew-x: 0; --tw-skew-y: 0; --tw-scale-x: 1; --tw-scale-y: 1; --tw-scroll-snap-strictness: proximity; --tw-ring-offset-width: 0px; --tw-ring-offset-color: #fff; --tw-ring-color: rgba(59,130,246,0.5); --tw-ring-offset-shadow: 0 0 transparent; --tw-ring-shadow: 0 0 transparent; --tw-shadow: 0 0 transparent; --tw-shadow-colored: 0 0 transparent; margin-top: 1.25em; margin-bottom: 0px; color: #374151; font-family: S\u00f6hne, ui-sans-serif, system-ui, -apple-system, 'Segoe UI', Roboto, Ubuntu, Cantarell, 'Noto Sans', sans-serif, 'Helvetica Neue', Arial, 'Apple Color Emoji', 'Segoe UI Emoji', 'Segoe UI Symbol', 'Noto Color Emoji'; font-size: 16px; font-style: normal; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; white-space: pre-wrap; background-color: #f7f7f8;\">Professor Chang has served as President of the Asian Magnetic Society, the Taiwan Magnetic Society, and the Taiwan Physics Society. Recently, he has been leading the NTU-IBM Quantum Computing Program, served as the director of IBM-NTU Q hub, and actively cultivating emerging interdisciplinary talents for application in new materials, new drug synthesis, optimization systems, and financial fields. He has been actively promoting quantum computing and founded the Taiwan Quantum Computing and Information Technology Association, serving as its first President. In 2022, Professor Chang became the Chair Professor in the Department of Physics at Chung Yuan Christian University and concurrently serves as the Director of the university-level Quantum Information Center.<\/p><\/td><\/tr><tr><th scope=\"row\">course<\/th><td><p><span style=\"color: #374151; font-family: S\u00f6hne, ui-sans-serif, system-ui, -apple-system, 'Segoe UI', Roboto, Ubuntu, Cantarell, 'Noto Sans', sans-serif, 'Helvetica Neue', Arial, 'Apple Color Emoji', 'Segoe UI Emoji', 'Segoe UI Symbol', 'Noto Color Emoji'; font-size: 16px; font-style: normal; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; white-space: pre-wrap; background-color: #f7f7f8;\">Undergraduate:<br \/>Quantum technology literacy for modern citizens<\/span><\/p><\/td><\/tr><tr><th scope=\"row\">\u8457\u4f5c<\/th><td><p><span style=\"color: black;\">During his academic career, 276 SCI journal articles had been published, only the papers<br \/>published during 2011-2020 are listed below for reference:<\/span><\/p><ol start=\"1\"><li>Zhang, Duan; Wu, Yecun; Su, Yu-Hsin; Hsu, Ming-Chien; Coileain, Cormac O.; Cho, Jiung; Choi, Miri; Chun, Byong Sun ; Guo, Yao;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>; Wu, Han-Chun. \u201cCharge density waves and degenerate modes in exfoliated monolayer 2H-TaS2\u201d. IUCRJ, 7, 913-919. Sep. 2020.<\/li><li>Lv, Yanhui; Li, Hui; Coileain, Cormac O.; Zhang, Duan; Heng, Chenglin;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>; Hung, K-M; Cheng, Huang Hsiang; Wu, Han-Chun. \u201cPhotoelectrical properties of graphene\/doped GeSn vertical heterostructures\u201d. RSC ADVANCES, 10(35), 20921-20927. Jun. 2020.<\/li><li>Yan, Wenjie; Lv, Chengzhai; Zhang, Duan; Chen, Yanhui; Zhang, Lei; Coileain, Cormac O.; Wang, Zhi; Jiang, Zhaotan; Hung, Kuan-Ming;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>; Wu, Han-Chun. \u201cEnhanced NO2 Sensitivity in Schottky-Contacted nType SnS2 Gas Sensors\u201d. ACS APPLIED MATERIALS &amp; INTERFACES, 12(23), 26746-26754. Jun. 2020.<\/li><li>Chien, Wei-Chen; Chang, Yu-Chian; Tsou, Yao-Tung; Kuo, Sy-Yen;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>. \u201cSTTDPSA: Digital PUF-Based Secure Authentication Using STT-MRAM for the Internet of Things\u201d. MICROMACHINES, 11(5), 502. May, 2020.<\/li><li>Wang, Meng-Chien; Huang, Che-Chun; Cheung, Chi-Ho; Chen, Chih-Yu; Tan, Seng Ghee; Huang, Tsung-Wei; Zhao, Yue; Zhao, Yanfeng; Wu, Gang; Feng, Yuan-Ping; Wu, Han-Chun;\u00a0<u><strong>Chang, ChingRay.<\/strong><\/u>\u00a0\u201cProspects and Opportunities of 2D van der Waals Magnetic Systems\u201d. ANNALEN DER PHYSIK, 532(5), 1900452. May, 2020.<\/li><li>Li, Bowen; Zhu, Lin; Wu, Chunyan; Yao, Kailun;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>. \u201cPhoton-assisted spin transport in blue phosphorene nanotubes\u201d. NANOTECHNOLOGY, 31(14), 145206. Apr. 2020.<\/li><li>Zhao, Yan-Feng; Fuh, Huei-Ru; Coileain, Cormac o; Cullen, Conor P.; Stimpel-Lindner, Tanja; Duesberg, Georg S.; Leonardo Camargo Moreira, Oscar; Zhang, Duan; Cho, Jiung; Choi, Miri; Chun, Byong Sun;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>; Wu, Han-Chun. \u201cHighly Sensitive, Selective, Stable, and Flexible NO2 Sensor Based on GaSe\u201d. ADVANCED MATERIALS TECHNOLOGIES, 5(4), 1901085, Apr. 2020.<\/li><li>Lv, Chengzhai; Yan, Wenjie; Shieh, Tung-Ho; Zhao, Yue; Wu, Gang; Zhao, Yanfeng; Lv, Yanhui; Zhang, Duan; Chen, Yanhui; Arora, Sunil K.; Coileain, Cormac O.;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>; Cheng, Hung Hsiang; Hung, Kuan-Ming; Wu, Han-Chun. \u201cElectrical Contact Barriers between a ThreeDimensional Metal and Layered SnS2\u201d. ACS APPLIED MATERIALS &amp; INTERFACES, 12(13), 15830-15836, Apr. 2020.<\/li><li>Wang, Meng-Chien; Huang, Che-Chun; Cheung, Chi-Ho; Chen, Chih-Yu; Tan, Seng Ghee; Huang, Tsung-Wei; Zhao, Yue; Zhao, Yanfeng; Wu, Gang; Feng, Yuan-Ping; Wu, Han-Chun;\u00a0<u><strong>Chang, ChingRay<\/strong><\/u>. \u201cProspects and Opportunities of 2D van der Waals Magnetic Systems\u201d. ANNALEN DER PHYSIK, 1900452, Mar. 2020.<\/li><li>Cheng, Wei-Ying; Fuh, Huei-Ru;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>. \u201cFirst-Principles Study for Gas Sensing of Defective SnSe2 Monolayers\u201d. APPLIED SCIENCES-BASEL, 10(5), 1623, Mar. 2020.<\/li><li>Tsou, Yao-Tung; Zhen, Hao; Kuo, Sy-Yen;\u00a0<u><strong>Chang, Ching-Ray<\/strong><\/u>; Fukushima, Akio; Rong, BorDoou. \u201cSPARR: Spintronics-based private aggregatable randomized response for crowdsourced data collection and analysis\u201d. COMPUTER COMMUNICATIONS, 152, 8-18. Feb. 2020.<\/li><li>Chang, Rui-An;\u00a0<u><strong>Chang, Ching-Ray.<\/strong><\/u>\u00a0\u201cChern insulator in a ferromagnetic two-dimensional electron system with Dresselhaus spin-orbit coupling\u201d. NEW JOURNAL OF PHYSICS, 21(10), 103019. Oct. 2019.<\/li><li>Moreira, Oscar Leonardo Camargo; Cheng, Wei-Ying; Fuh, Huei-Ru; Chien, Wei-Chen; Yang, Wenjie; Fei, Haifeng; Xu, Hongjun ; Zhang, Duan; Chen, Yanhui; Zhao, Yanfeng; Lv, Yanhui; Wu, Gang; Lv, Chengzhai; Arora, Sunil K.; Coileain, Cormac O.; Heng, Chenglin;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>; Wu, Han-Chun. \u201cHigh Selectivity Gas Sensing and Charge Transfer of SnSe2\u201d.\u00a0<em>ACS SENSORS<\/em>, 4(9), 2546-2552. Sep. 2019.<\/li><li>Huang, H. T.; Garu, P.; Li, C. H. ; Chang, W. C.; Chen, B. W.; Sung, S. Y.; Lee, C. M.; Chen, J. Y.; Hsieh, T. F.; Sheu, W. J.; Ouyang, H.; Wang, W. C.;\u00a0<strong><u>Chang, C. R.<\/u><\/strong>; Wang, C. L.; Hsu, M. S.; Wei, Z. H. \u201cMagnetoresistive Biosensors for Direct Detection of Magnetic Nanoparticle Conjugated Biomarkers on a Chip\u201d.\u00a0<em>SPIN<\/em>, 9(2), 1940002. Jun. 2019.<\/li><li>Chen, Jenq-Wei; Chiou, Kuan Ru; Hsueh, An-Chih;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>. \u201cDielectric relaxation of the double perovskite oxide Ba2PrRuO6\u201d.\u00a0<em>RSC ADVANCES<\/em>, 9(22), 12319-12324. April 2019.<\/li><li>Sarkar, Partha; Lu, Chih-Cheng; Jeng, Jen-Tzong; Yuan, Fu-Te ; Lai, Meng-Huang; Chiriac, Horia; Lupu, Nicoleta;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>. \u201cSoft ferromagnetic amorphous microwires for GMI sensing cores\u201d.\u00a0<em>JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS<\/em>, 474, 107-110. Mar 2019.<\/li><li>Fei, Haifeng; Wu, Gang; Cheng, Wei-Ying; Yan, Wenjie; Xu, Hongjun; Zhang, Duan; Zhao, Yanfeng; Lv, Yanhui; Chen, Yanhui; Zhang, Lei; Coileain, Cormac O.; Heng, Chenglin;\u00a0<strong><u>Chang,<\/u><\/strong><strong><u>Ching-Ray<\/u><\/strong>; Wu, Han-Chun. \u201cEnhanced NO2 Sensing at Room Temperature with Graphene via Monodisperse Polystyrene Bead Decoration\u201d.\u00a0<em>ACS OMEGA<\/em>, 4(2), 3812-3819. Feb. 2019.<\/li><li>Xu, Hongjun; Huang, Hsin-Pan; Fei, HaiFeng; Feng, Jiafeng; Fuh, Huei-Ru; Cho, Jiung; Choi, Miri; Chen, Yanhui; Zhang, Lei; Chen, Dengyun; Zhang, Duan; Coileain, Cormac; Han, Xiufeng;\u00a0<strong><u>Chang, Ching -Ray<\/u><\/strong>; Wu, Han-Chun. \u201cStrategy for Fabricating Wafer-Scale Platinum Disulfide\u201d.\u00a0<em>ACS APPLIED MATERIALS &amp; INTERFACES<\/em>, 11(8), 8202-8209, Feb. 2019.<\/li><li>Yan, WJ ; Chen, DY; Fuh, Huei-Ru ; Li, YL ; Zhang, D. ; Liu, HJ ; Wu, G. ; Zhang, L. ; Ren, XK ; Cho, J. ; Choi, M.; Chun, BS ; Coileain, CO. ; Xu, Hong-Jun ; Wang, Z.; Jiang, ZT ;<strong><u>\u00a0Chang, Ching-Ray\u00a0<\/u><\/strong>; Wu, HC, \u201cPhoto-enhanced gas sensing of SnS2 with nanoscale defects\u201d, RSC ADVANCES, vol.9(2), 626-635, Jan 2019.<\/li><li>Chi-Ho Cheung, R C Xiao, Ming-Chien Hsu, Huei-Ru Fuh, Yeu-Chung Lin and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>,<sup>\u00a0\u201c<\/sup>Systematic analysis for triple points in all magnetic symmorphic systems and symmetry-allowed coexistence of Dirac points and triple points\u201d, NEW JOURNAL OF PHYSICS, vol.20, 123002, DEC 5 2018.<\/li><li>Siu, Zhuo Bin ; Chang, Jian-Yuan ; Tan, Seng Ghee ; Jalil, Mansoor B. A. ; and\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>; \u201cCurvature induced quantum phase transitions in an electron-hole system\u201d, SCIENTIFIC REPORTS, vol. 8, 16497, NOV 7 2018<\/li><li>Hsu, Ming-Chien ; Yao, Liang-Zi ; Tan, Seng Ghee ;<strong>\u00a0<u>Chang, Ching-Ray<\/u>\u00a0<\/strong>; etc., \u201cInherent orbital spin textures in Rashba effect and their implications in spin-orbitronics\u201d, JOURNAL OF PHYSICS-CONDENSED MATTER, vol.30 (28), 285502, JUL 18 2018.<\/li><li>Jia, Tanhua ; Fuh, Huei-Ru ; Chen, Dengyun ; Abid, Mohamed ; Abid, Mourad; Zhang, Duan ; Sarker, Anas B. ; Cho, Jiung ; Choi, Miri ; Chun, Byong Sun ; Xu, Hongjun ; Coileain, Cormac O. ;Liu, Huajun ;\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>; and Wu, Han-Chun, \u201dGiant and Linear Piezo-Phototronic Response in Layered GaSe Nanosheets\u201c, ADVANCED ELECTRONIC MATERIALS, vol.4 (4), 1700447, APR 2018.<\/li><li>Xu, Hongjun; Hsu, Ming-Chien; Fuh, Huei-Ru; Wu, Han-Chun etc.; and\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>,\u201d Threshold magnetoresistance in anistropic magnetic 2D transition metal dichalcogenides\u201d, JOURNAL OF MATERIALS CHEMISTRY C, vol.6(12), 3058-3064, March 28, 2018.<\/li><li>Ivo Klik, James McHugh, Roy W. Chantrell, and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cDebye formulas for a relaxing system with memory\u201d. SCIENTIFIC REPORTS, volume\u00a0<strong>8<\/strong>\u00a0,3271, February 2018.<\/li><li>Luong, Van Su; Su, Yu-Hsin; Lu, Chih-Cheng; Jeng, Jen-Tzong; Hsu, Jen-Hwa; Liao, Ming-Han; Wu, Jong-Ching; Lai, Meng-Huang;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>. \u201cPlanarization, Fabrication, and\u00a0 Characterization of Three-Dimensional Magnetic Field Sensors\u201d.\u00a0<em>IEEE TRANSACTIONS ON NANOTECHNOLOGY<\/em>, 17(1),11-25, Jan. 2018.<\/li><li>Yuan Ping Feng, Lei Shen, Ming Yang, Aizhu Wang, Minggang Zeng, Qingyun Wu, Sandhya Chintalapati and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cProspects of spintronics based on 2D materials\u201d, WILEY INTERDISCIPLINARY REVIEWS-COMPUTATIONAL MOLECULAR SCIENCE, Sep-Oct 2017.<\/li><li>Luo, GY ; Lin, JG ;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cSpin pump and probe in lanthanum strontium manganite\/platinum bilayer\u201d, SCIENTIFIC REPORTS, volume 7, Pages .6612, JUL 26 2017.<\/li><li>Zhang, Liang ; Lin, Ben-Chuan ; Wu, Yan-Fei; (Wu, Han-Chun; Huang, Tsung-Wei ;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, etc.,\u201d Electronic Coupling between Graphene and Topological Insulator Induced Anomalous Magnetotransport Properties\u201d, ACS NANO, Volume 11, pages 6277-6285, JUN 2017.<\/li><li>YC Wu, et. al.,\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>\u00a0and Han-Chun Wu, \u201cSimultaneous large continuous band gap tunability and photoluminescence enhancement in GaSe nanosheets via elastic strain engineering\u201d, Nano Energy, Volume 32, Pages 157\u2013164, February 2017.<\/li><li>Wu, Han-Chun; Chaika, Alexander; Hsu, Ming-Chien; Huang, Tsung-Wei; Abid, Mourad; Abid, Mohamed; Aristov, Victor Yu; Molodtsova, Olga V.; Babenkov, Sergey V.; Niu, Yuran; Murphy, Barry E.; Krasnikov, Sergey A.; Lubben, Olaf; Liu, Huajun; Chun, Byong Sun; Janabi, Yahya T.; Molotkov, Sergei N.; Shvets, Igor V.; Lichtenstein, Alexander I.; Katsnelson, Mikhail I.;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cLarge positive in-plane magnetoresistance induced by localized states at nanodomain boundaries in graphene. Nature Communications, Vol. 8, 14453, Feb.2017.<\/li><li>Chen, Hao-Hsuan; Zhang, Zongzhi;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>; Liu, Yaowen, \u201cNonlinear stability analysis for a spin-torque nano-oscillator with a perpendicular spin polarizer: A pendulum-like model\u201d, Journal of Applied Physics, Vol. 121(1), 013902, Jan. 2017.<\/li><li>Fuh, Huei-Ru, Yan, Binghai, Wu, Shu-Chun, Felser Claudia,\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cMetal-insulator transition and the anomalous Hall effect in the layered magnetic materials VS2 and VSe2. New Journal of Physics\u201d, Vol.18, 113038, Nov. 2016.<\/li><li>Cheung, Chi-Ho, Fuh, Huei-Ru, Hsu, Ming-Chien, Lin, Yeu-Chung,\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cSpin Orbit Coupling Gap and Indirect Gap in Strain-Tuned Topological Insulator-Antimonene\u201d NANOSCALE RESEARCH LETTERS, Vol.11, 459, Oct. 2016.<\/li><li>Huei-Ru Fuh,\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, Yin-Kuo Wang, Richard F.L. Evans, Roy W. Chantrell, Horng-Tay Jeng, \u201cNewtype single-layer magnetic semiconductor in transition-metal dichalcogenides VX2(X=S, Se and Te), Scientific Reports, Vol.6,32625, Sep. 2016.<\/li><li>Han-Chun Wu, et. al. and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cAnomalous Anisotropic Magnetoresistance of Antiferromagnetic Epitaxial Bimetallic Films: Mn<sub>2<\/sub>Au and Mn<sub>2<\/sub>Au\/Fe Bilayers\u201d, Adv. Fun Mater, Vol.26,32, pp. 5884-5892, Aug. 2016.<\/li><li>Das, Bipul, Lee, Y. C., Li, L. C., Yi-Shiou, Liu, Suen, Y. W., Horng, Lance, Wu, Te-Ho,\u00a0<strong><u>Chang, C. R.<\/u><\/strong>, Wu. Jung-Ching, \u201cLow-Frequency Noise Characterization of CoFeB\/MgO\/CoFeB MTJ-Based Perpendicular Field Sensor\u201d, IEEE Trans Mag., Vol.52, 4001004, Jul. 2016.<\/li><li>Luong, Van Su, Jeng, Jen-Tzong, Hsu, Jen-Hwa,\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, Lu, Chih-Cheng, \u201cTunneling-Magnetoresistance Vector Magnetometer with Deflection Flux-Chopper\u201d, IEEE Trans Mag., Vol.52, 4001204, Jul. 2016.<\/li><li>Chen, Hao-Hsuan; Lee, Ching-Ming; Zhang, Zongzhi; Liu, Yaowen; Wu, Jong-Ching; Horng, Lance;<strong>\u00a0<u>Chang, Ching-Ray<\/u>,\u00a0<\/strong>\u201cPhase locking of spin-torque nano-oscillator pairs with magnetic dipolar coupling\u201d, PHYSICAL REVIEW B Vol. 93, 224410, Jun. 8. 2016.<\/li><li>Su, Yu-Hsin; Chen, Son-Hsien; Hu, C;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cCompetition between spin-orbit interaction and exchange coupling within a honeycomb lattice ribbon&#8221;,\u00a0JOURNAL OF PHYSICS D-APPLIED PHYSICS (J Phys. D), Vol. 49, 015305, Jan 13. 2016.<\/li><li>Chen, Kuo-Chin, Lee, Hsin-Han, and\u00a0<strong><u>Ching-Ray Chang,<\/u><\/strong>\u00a0\u201c Persistent quantum resonance in Spin Hall transport\u201d, Phys. Rev. B, vol. 93, 035405, Jan 2016.<\/li><li>Chen, Hao-Hsuan; Zhang, Zongzhi; Liu, Yaowen;\u00a0<strong><u>\u00a0Ching-Ray Chang<\/u>\u00a0<\/strong>; \u201cStray Field Dependence of Threshold Current in a Spin-Torque Oscillator With a Perpendicular Spin Polarizer\u201d, IEEE TRANSACTIONS ON MAGNETICS,\u00a0\u00a0Vol. 51, 1401104, NOV 2015<\/li><li>Luong, VS ; Jeng, JT ; Lai, BL ;Hsu, JH ;<strong><u>\u00a0Ching-Ray Chang<\/u><\/strong>\u00a0; Lu, CC ,\u201cDesign of 3-D Magnetic Field Sensor With Single Bridge of Spin-Valve Giant Magnetoresistance Films\u201d, IEEE TRANSACTIONS ON MAGNETICS,\u00a0Vol. 51, 4004504,NOV 2015<\/li><li>Saravanan, P.; Hsu, Jen-Hwa; Cherif, Salim Mourad; and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, et., \u201dCorrelation between static and dynamic magnetic properties of highly perpendicular magnetized Co49Pt51 thin films\u201d, PHYSICAL REVIEW B,\u00a0\u00a0Vol.92, 144431, OCT 30 2015<\/li><li>Chang, Jui-Hang;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cTunable three-axis magnetoresistance sensor with a spin-polarised current\u201d JOURNAL OF PHYSICS D-APPLIED PHYSICS, Vol. 48, 405004, OCT 14 2015<\/li><li>Luo, G. Y.; Belmeguenai, M.; Roussigne, Y.; Lin, JG, and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, et., \u201cEnhanced magnetic damping in La0.7Sr0.3MnO3 capped by normal metal layer\u201d , AIP ADVANCES, Vol 5,\u00a0097148, SEP 2015<\/li><li>Wu, HC ; Chaika, AN; Huang, TW and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, et., \u201cTransport Gap Opening and High On-Off Current Ratio in Trilayer Graphene with Self-Aligned Nanodomain Boundaries\u201d, ACS NANO\u00a0\u00a0vol. 9, 8967-8975\u00a0, SEP 2015<\/li><li>Ming-Chien Hsu, Yeu-Chung Lin, and\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, &#8220;Finite Size Effect of Nondegenerate Edge States in Annulus Topological Insulators&#8221;, J, Appl., Phys., Vol 118, 043909, July 28, 2015<\/li><li>Chen, Son-Hsien, Sun, Shih-Jye, Su Yu-Hsin,<strong>\u00a0<u>Chang, Ching-Ray<\/u><\/strong>, \u201cAsymmetric edge modes by staggered potential in honeycomb lattice: Spin splitter\u201d, Journal of Applied Physics, Vol 117, 17C705, May 7 2015<\/li><li>Fuh, Huei-Ru; Weng, Ke-Chuan;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cElectronic structure of ferromagnetic semiconductor material on the monoclinic and rhombohedral ordered double perovskites La2FeCoO6\u201d, Journal of Applied Physics, Vol 117, 17B902, MAY 7 2015<\/li><li>Lee, YC, Chao, CT, Li, LC, Suen, YW, Horng, Lance,Wu, Te-Ho ;\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, Wu, JC, \u201cMagnetic tunnel junction based out-of-plane field sensor with perpendicular magnetic anisotropy in reference layer\u201d, Journal of Applied Physics, Vol 117, 17A320, MAY 7 2015<\/li><li>Bo-Ray Lee,\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong><u>,<\/u>\u00a0Ivo Klik, \u201cSpin transport in multiple connected fractal conductors\u201d, SPIN, Vol. 4, No. 3, 1450007, 9 December 2014.<\/li><li>Luong, Van-Su; Chang, Chin-Hsiung; Jeng, Jen-Tzong,\u00a0<strong><u>Chang,Ching-Ray<\/u><\/strong>,\u201cReduction of Low-Frequency Noise in Tunneling-Magnetoresistance Sensors With a Modulated Magnetic Shielding\u201d IEEE TRANSACTIONS ON MAGNETICS\u00a0\u00a0Vol.50, 11\u00a0,p. 4005904\u00a0, NOV 2014<\/li><li>Siu, Zhuo Bin; Jalil, Mansoor B. A.;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201dPersistent Spin Helix Spin Polarizer\u201d, IEEE TRANSACTIONS ON MAGNETICS,\u00a0 Vol. 50, 11, p.1300604, NOV 2014<\/li><li>Chang, Jui-Hang;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>; \u201cTunable surface anisotropy of synthetic antiferromagnetic free layer\u201d , JOURNAL OF APPLIED PHYSICS, vol.116, 013902 , JUL 7 2014<\/li><li>Chen, Kuo-Chin ; Su, Yu-Hsin; Chen, Son-Hsien ;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>; \u201cNon-equilibrium study of spin wave interference in systems with both Rashba and Dresselhaus (001) spin-orbit coupling\u201d, JOURNAL OF APPLIED PHYSICS, vol.115, 17C305, MAY 7 2014<\/li><li>Luo, GY ;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>\u00a0; Lin, JG; \u201cInfluence of damping constant on inverse spin hall voltage of La0.7Sr0.3MnO3(x)\/platinum bilayers\u201d , JOURNAL OF APPLIED PHYSICS, Vol.115, 17C508, MAY 7 2014<\/li><li>Chen, Hao-Hsuan; Lee, Ching-Ming; Wu, Jong-Ching,\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>;\u201d Synchronization of spin torque nano-oscillators through dipolar interactions\u201d, JOURNAL OF APPLIED PHYSICS, vol.115, 134306, APR 7 2014<\/li><li>Chang, Jui-Hang;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>; \u201cInfluence of Film Thickness on Magnetic Tunneling Junction Sensor with In-Plane\/Out-of-Plane Sensing Capabilities\u201d, IEEE TRANSACTIONS ON MAGNETICS, vol.50, 4000804 , Jan, 2014<\/li><li>Hsin-Han Lee, Jiun-Yue Liu, Shun-Qing Shen, and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>; \u201cImpurity influence in quantum spin Hall transport\u201d, Phys. Rev. B vol.88, 195149 ,NOV.25,2013<\/li><li>Chen, Kuo-Wei; Su, Yu-Hsin; Chen, Son-Hsien;\u00a0<strong><u>Chang, Ching-Ray\u00a0<\/u><\/strong>; \u201c<a title=\"Js\" href=\"http:\/\/apps.webofknowledge.com\/full_record.do?product=UA&amp;search_mode=GeneralSearch&amp;qid=5&amp;SID=T1r6LPvlK8VHbt3WCNO&amp;page=1&amp;doc=1\">Quantum interference and sharp spin polarization on a double quantum dot: Role of the Rashba spin-orbit interaction\u201d PHYSICAL REVIEW B\u00a0\u00a0vol: 88, 035443, JUL 29 2013\u00a0\u00a0\u00a0<\/a><\/li><li>Luo, G. Y. ;\u00a0<strong><u>Chang,Ching-Ray<\/u><\/strong>\u00a0; Lin, J. G., \u201cThickness Dependent Spin Pumping Effects in La0.7Sr0.3MnO3\/Platinum\u00a0 Bilayer Film\u201d, IEEE TRANSACTIONS ON MAGNETICS\u00a0, vol.49, 4371-4374 , JUL 2013<\/li><li>Chui, S. T.; Lin, Z. F.;\u00a0<strong><u>Chang,Ching-Ray<\/u><\/strong>; \u201cNonlocal optical generation of spin and charge currents on the surface of magnetic insulators using total absorption and surface plasmons\u201d, JOURNAL OF APPLIED PHYSICS\u00a0, vol 113, 233910, JUN 21 2013<\/li><li>Chang, Jian-Yuan; Wu, Jhih-Sheng;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201cExact Hamiltonians with Rashba and cubic Dresselhaus spin-orbit couplings on a curved surface\u201d, PHYSICAL REVIEW B 87, 174413 , MAY 8 2013<\/li><li>Chang, Jui-Hang; Chen, Hao-Hsuan;\u00a0<strong><u>Chang, Ching-Ray,\u00a0<\/u>\u201c<\/strong>Reduction of critical current density in a spin valve with a perpendicular polarizer and a planar biaxial free layer<strong>\u201d<\/strong><strong>,<\/strong>\u00a0JOURNAL OF PHYSICS D-APPLIED PHYSICS, vol 46, 035002, Jan 2013<\/li><li>Chen, Son-Hsien; Chen, Chien-Liang;\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>, \u201c<a title=\"Js\" href=\"http:\/\/apps.webofknowledge.com\/full_record.do?product=UA&amp;search_mode=GeneralSearch&amp;qid=1&amp;SID=2FkIg4212BiGKHlBL8A&amp;page=1&amp;doc=1\">Spin-charge conversion in a multiterminal Aharonov-Casher ring coupled to precessing ferromagnets: A charge-conserving Floquet nonequilibrium Green function approach\u201d, PHYSICAL REVIEW B 87,045402 (2013)\u00a0<\/a><\/li><li>Luo, G. Y., Song, M. Y., Hung, H. Y., Chiu, Y. C., Kwo, J., Lee, S. F., Chang, Ching-Ray, Lin, J. G., \u201cSpin Pumping Induced Inverse Spin-Hall Effects in La0.7Sr0.3MnO3\/Platinum Bilayer Film\u201d, IEEE TRANSACTIONS ON MAGNETICS, vol.48, 3958-3960, (2012).<\/li><li>CL Chen,\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>\u00a0and B. Nickolic, \u201cQuantum coherence and its dephasing in the giant spin Hall effect and nonlocal voltage induced by magnetotransport through multiterminal graphene bars\u201d, Phys. Rev. B 85, 155414 , Jan 2 2012<\/li><li>Chen Chien-Liang; Su Yu-Hsin and\u00a0<strong><u>Chang Ching-Ray<\/u><\/strong>, \u201cSpin-orbit force in graphene with Rashba spin-orbit coupling\u201d, J. Appl. Phys. 111, 07B330 (2012)<\/li><li>Lee Hsin-Han and Chang Ching-Ray, \u201cSpin transport calculation for the branch-shaped zigzag graphene nano-ribbon\u201d, J. Appl. Phys. 111, 07C521 (2012).<\/li><li>Su Yu-Hsin; Chen Chien-Liang; Chen Kuo-Wei and\u00a0<strong><u>Chang Ching-Ray<\/u><\/strong>, \u201cSpin stability and magnetic screening of a magnetic impurity in four-terminal Landauer setup with Rashba spin-orbit coupling\u201d, J. Appl. Phys. 111, 07C324 (2012)<\/li><li>JH Chang, HH Chen and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cMultiple-Step Relaxing-Precessional Magnetization Switching\u201d, IEEE Trans. Magn., Mag. Vol.47,issue10, 3876, (2011)<\/li><li>T.C. Cheng, J.Y. Chen and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cGeometrical Effect on the Non-Abelian Spin-orbital Gauge Field of a Curved Surface\u201d, Physical Review B, B84, 214423, Dec 2011.<\/li><li>M.Y. Song , W.C. Chen, Daniel Hsu,\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, and J.G. Lin, \u201cModulated room temperature magnetoresistance in manganite superlattices\u201d, Appl Phys A, 104, 811\u2013813,(2011).<\/li><li>H.H. Chen, J.H. Chang and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cSynchronization of spin-torque nano-osciallators from an induced corrugated attractor\u201d, SPIN, vol. 1, 1-20, (2011).<\/li><li>Chang, Jui-Hang, Chen, Hao-Hsuan,\u00a0<strong><u>Chang, Ching-Ray<\/u><\/strong>\u00a0and Yaowen Liu,\u201d Phase locking of dynamical modes in a nanomagnetic oscillator with a circularly spin-polarized current\u201d, Phys. Rev. B 84, 054457 (2011).<\/li><li>Liu, Ming-Hao; Wu, Jhih-Sheng; Chen, Son-Hsien and\u00a0<strong><u>Chang,Ching-Ray<\/u><\/strong>, \u201cSpin and charge transport in U-shaped one-dimensional channels with spin-orbit couplings\u201d, Phys. Rev. B 84, 085307 (2011) , August 22, 2011<\/li><li>Hou Zhiwei; Liu Yaowen; Cardoso Susana; Freitas Paulo P.; Chen Haohsun; and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>,\u201dDynamics of the reference layer driven by spin-transfer torque: Analytical versus simulation model\u201d, J. Appl. Phys. 109, 113914 (2011)<\/li><li>D. Cimpoesu, I. Klik,\u00a0<strong><u>C. R. Chang<\/u><\/strong>, A. Stancu, L. Spinu, \u201cThermally activated transitions in a system of two single domain ferromagnetic particles\u201d, J. Appl. Phys.\u00a0<strong>109<\/strong>, 07D339 (2011)<\/li><li>Su Yu-Hsin; Chen Son-Hsien; Chen Kuo-Wei; Chen Chien-Liang;\u00a0<strong><u>Chang Ching-Ray<\/u><\/strong>, \u201cSpin flip of a single anisotropic magnetic impurity in four-terminal Landauer setup with Rashba spin-orbit coupling\u201d, J. Appl. Phys. 109, 07C721 (2011)<\/li><li>Chen Chien-Liang; Su Yu-Hsin; Chen Kuo-Wei; and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cEnhanced spin Hall accumulation with two charge current vortices in the Landauer setup with four terminals\u201d, J. Appl. Phys. 109, 07C715 (2011)<\/li><li>Ivo Klik and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>, \u201cComplex conjugate eigenvalues in the spectrum of an operator for resonant activation\u201d, Physical Review E<strong>,<\/strong>\u00a083, 042101, (2011)<\/li><li>JS Yang, CM Lee, and\u00a0<strong><u>Ching-Ray Chang<\/u><\/strong>,\u201d Switching Behavior of Vortex Cores in Bilayer Nanodots by Uniform Magnetic Field Pulses\u201d, IEEE Trans. Magn., Mag-47, 641-6444, (2011)<\/li><li><span style=\"color: black;\">J. H. Chang, H. H. Chen,\u00a0<\/span>and\u00a0<strong><u>Ching-Ray Chan<\/u>g<\/strong><span style=\"color: black;\">, \u201cInstabilities of a spin-valve system with\u00a0perpendicular polarizer and in-plane bias field\u201d, Physical Review B, B83, 054425, (2011)<\/span><\/li><\/ol><\/td><\/tr><\/tbody><\/table><table width=\"90%\"><tbody><tr><th scope=\"row\" width=\"150\">\u884c\u653f\u8fa6\u516c\u5ba4<\/th><td width=\"300\">\u00a0<\/td><th width=\"80\">\u5206\u6a5f<\/th><td>\u00a0<\/td><\/tr><tr><th scope=\"row\">\u8fa6\u516c\u5ba4<\/th><td>\u77e5\u884c\u9818\u822a\u9928213<\/td><th>\u5206\u6a5f<\/th><td>4090<\/td><\/tr><tr><th scope=\"row\">\u500b\u4eba\u7db2\u9801<\/th><td>https:\/\/goo.gl\/4VHeQk<\/td><th>\u5206\u6a5f<\/th><td>\u00a0<\/td><\/tr><tr><th scope=\"row\">Email<\/th><td>\u00a0crchang@phys.ntu.edu.tw<\/td><th>\u00a0<\/th><td>\u00a0<\/td><\/tr><\/tbody><\/table><h2>\u00a0<\/h2>\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"<p>DIrector of QIC Ching-Ray, Chang Ph.D IBM-NTU Q Hub Dir [&hellip;]<\/p>\n","protected":false},"author":6,"featured_media":0,"parent":2569,"menu_order":1,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-2562","page","type-page","status-publish","hentry","entry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v23.4 - 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