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Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Description: Weili05

 

 

 

TJU

SIOM

HKUST

OSU

 

 

 

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, nanostructured and microstructured material optics, ultrafast lasers and phenomena, and semiconductor photonics. Dr. Zhang is a member of the American Physical Society, the Institute of Electrical and Electronics Engineers, and the Optical Society of America.

 

Selected Publications

Robust large dimension terahertz cloaking, Liang, D.; Gu, J.; Han, J.; Yang, Y.; Zhang, S.; Zhang, W. Advanced Materials 2012, 24, 10.1002/adma.201103890.

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.

Localized plasmonic properties of subwavelength geometries resonating at terahertz frequencies, Lu, X.; Han, J.; Zhang, W.  IEEE Journal of Selected Topics in Quantum Electronics 2011, 17, 119-129.

Terahertz superconducting plasmonic hole array, Tian, Z.; Singh, R.; Han, J.; Gu, J.; Xing, Q.; Wu, J.; Zhang, W. Optics Letters 2010, 35, 3586-3588.

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.

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 4024

ECEN 4503

ECEN 5843

ECEN 6843

ECEN 5060

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This page last modified on March 8, 2004