|
|
|
|
|
|
|
||||
|
|
Weili
Zhang, Ph.D. |
|
|||||||
|
|
Professor |
|
|
||||||
|
|
School of
Electrical and Computer Engineering |
|
|||||||
|
|
202
Engineering South |
|
|||||||
|
|
Stillwater,
OK 74078 |
|
|
||||||
|
|
(405)
744-7297 |
|
|
||||||
|
|
weili.zhang@okstate.edu |
|
|
||||||
|
|
|
|
|||||||
|
|
|
|
|
|
|
|
|
|
|
|
Dr. Zhang is Professor of Electrical Engineering, and a member of the Ultrafast Terahertz Research Group (UTRG) at Oklahoma State University. His research interests have included terahertz optoelectronics, nano- and micro-structured material optics, ultrafast lasers and phenomena, and semiconductor photonics. Selected Publications
Active control of electromagnetically
induced transparency analogue in terahertz metamaterials,
Gu, J.; Singh, R.; Liu, X.; Zhang, X.; Ma, Y.;
Zhang, S.; Maier, S. A.; Tian, Z.; Azad, A. K.;
Chen, H.-T.; Taylor, A. J.; Han, J.; Zhang, W. Nature Communications 2012,
3. 1151. Robust large dimension terahertz cloaking,
Liang, D.; Gu, J.; Han, J.; Yang, Y.; Zhang, S.;
Zhang, W. Advanced Materials 2012, 24, 916-921. An active hybrid plasmonic
metamaterial, Gu, J.;
Singh, R.; Azad, A. K.; Han, J.; Taylor, A. J.; O¡¯Hara, J. F.; Zhang, W. Optical Materials Express 2012, 2, 1617-1623. [OMEx cover image, monthly top-downloaded article: December
2011-March 2012, and top-downloaded article in metamaterials] Hiding a realistic object using a broadband terahertz
invisibility cloak, Zhou,
F.; Bao, Y.; Cao, W.; Stuart, C. T.; Gu, J.; Zhang, W.; Sun, C. Scientific Reports
2011, 1, 78. [CLEO:2011
Press Release] Terahertz superconductor metamaterial, Gu, J.; Singh,
R.; Tian, Z.; Cao, W.; Xing, Q.; He, M.; Zhang, J.
W.; Han, J.; Chen, H.-T.; Zhang, W. Applied
Physics Letters 2010, 97,
071102. [APL monthly
top 20 most-downloaded article] Negative refractive index in chiral metamaterials, Zhang, S.; Park, Y.-S.; Li, J.; Lu, X.;
Zhang, W.; Zhang, X. Physical Review
Letters 2009, 102, 023901. [Viewpoint in Physics 2009, 2, 3; View &
News in Nature Photonics 2009, 3, 133] Coupling between a dark and a bright eigenmode in a terahertz metamaterial,
Singh, R.; Rockstuhl, C.; Lederer,
F.; Zhang, W. Physical Review B 2009, 79, 085111. Thin-film sensing with planar terahertz metamaterials: sensitivity and limitations, O¡¯Hara, J. F.; Singh, R.; Brener, I.; Smirnova, E.; Han,
J.; Taylor, A. J.; Zhang, W. Optics
Express 2008, 16, 1786-1795. Direct observation of a transition
of a surface plasmon resonance from a photonic
crystal effect, Zhang, W.; Azad, A. K.; Han, J. G.; Xu,
J. Z.; Chen, J.; Zhang, X.-C. Physical
Review Letters 2007, 98,
183901. [OSU in the News] Transmission properties of terahertz
pulses through subwavelength double split-ring
resonators, Azad, A. K.; Dai, J. M.; Zhang, W. Optics Letters 2006,
31, 634-636. Terahertz transmission properties of thin, subwavelength
metallic hole arrays, Qu, D.; Grischkowsky, D.; Zhang, W. Optics Letters 2004, 29, 896-898. Terahertz studies
of carrier dynamics and dielectric response of n-type, freestanding epitaxial
GaN, Zhang, W.; Azad, A.; Grischkowsky,
D. Applied Physics Letters 2003, 82, 2841-2843. Courses
ECEN 5060 This
page last modified on March 8, 2004
|
|||||||||