Shang-Hua Yang - Publications

Affiliations: 
National Tsing Hua University, Hsinchu City, Taiwan, ROC 
Area:
Terahertz, Optics, Semiconductor, Nanotechnology, Optoelectronics, Plasmonics

24 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2022 Chen WC, Chang CW, Yang SH. Group IV THz large area emitter based on GeSn alloy. Optics Letters. 47: 4411-4414. PMID 36048666 DOI: 10.1364/OL.464541  0.305
2020 Yang S, Jarrahi M. Navigating Terahertz Spectrum via Photomixing Optics & Photonics News. 31: 36-43. DOI: 10.1364/Opn.31.7.000036  0.584
2017 Huang S, Yang J, Yang S, Yu M, Kwong D, Zelevinsky T, Jarrahi M, Wong CW. Globally Stable Microresonator Turing Pattern Formation for Coherent High-Power THz Radiation On-Chip Physical Review X. 7. DOI: 10.1103/Physrevx.7.041002  0.663
2016 Hashemi MR, Yang SH, Wang T, Sepúlveda N, Jarrahi M. Electronically-Controlled Beam-Steering through Vanadium Dioxide Metasurfaces. Scientific Reports. 6: 35439. PMID 27739471 DOI: 10.1038/Srep35439  0.527
2016 Huang S, Yang J, Yang S, Yu M, Kwong D, Jarrahi M, Wong CW. On-chip Turing pattern formation for coherent high-power THz radiation Frontiers in Optics. DOI: 10.1364/Fio.2016.Fth4G.7  0.664
2016 Yang S, Watts R, Li X, Wang N, Cojocaru V, Barry L, O’Gorman J, Jarrahi M. Compact terahertz radiation source using a bimodal laser and plasmonic photomixer Spie Newsroom. DOI: 10.1117/2.1201603.006389  0.612
2016 Yang SH, Salas R, Krivoy EM, Nair HP, Bank SR, Jarrahi M. Characterization of ErAs:GaAs and LuAs:GaAs Superlattice Structures for Continuous-Wave Terahertz Wave Generation through Plasmonic Photomixing Journal of Infrared, Millimeter, and Terahertz Waves. 1-9. DOI: 10.1007/S10762-016-0255-Z  0.625
2015 Yang SH, Jarrahi M. Spectral characteristics of terahertz radiation from plasmonic photomixers. Optics Express. 23: 28522-30. PMID 26561122 DOI: 10.1364/Oe.23.028522  0.708
2015 Yardimci NT, Yang SH, Berry CW, Jarrahi M. Terahertz radiation enhancement in large-area photoconductive sources by using plasmonic nanoantennas Conference On Lasers and Electro-Optics Europe - Technical Digest. 2015. DOI: 10.1364/CLEO_SI.2015.STu1H.7  0.685
2015 Hashemi MRM, Yang SH, Wang T, Sepulveda N, Jarrahi M. Efficient terahertz phase modulation using vanadium dioxide meta-surfaces Conference On Lasers and Electro-Optics Europe - Technical Digest. 2015. DOI: 10.1364/CLEO_SI.2015.STu1H.4  0.526
2015 Yardimci NT, Yang SH, Berry CW, Jarrahi M. High-power terahertz generation using large-area plasmonic photoconductive emitters Ieee Transactions On Terahertz Science and Technology. 5: 223-229. DOI: 10.1109/Tthz.2015.2395417  0.719
2015 Yang SH, Jarrahi M. Frequency-tunable continuous-wave terahertz sources based on GaAs plasmonic photomixers Applied Physics Letters. 107. DOI: 10.1063/1.4932114  0.704
2014 Yardimci NT, Yang SH, Berry CW, Jarrahi M. Large area plasmonic photoconductive emitters for generating high power broadband terahertz radiation Frontiers in Optics, Fio 2014. DOI: 10.1364/Fio.2014.Fth3E.5  0.703
2014 Unlu M, Hashemi M, Berry C, Li S, Yang S, Jarrahi M. Fully integrated broadband terahertz modulators Spie Newsroom. DOI: 10.1117/2.1201410.005657  0.542
2014 Yang SH, Hashemi MR, Berry CW, Jarrahi M. 7.5% Optical-to-terahertz conversion efficiency offered by photoconductive emitters with three-dimensional plasmonic contact electrodes Ieee Transactions On Terahertz Science and Technology. 4: 575-581. DOI: 10.1109/Tthz.2014.2342505  0.711
2014 Yang SH, Hashemi MR, Berry CW, Jarrahi M. High-efficiency terahertz emitters based on three-dimensional metallic nanostructures Ieee Mtt-S International Microwave Symposium Digest. DOI: 10.1109/MWSYM.2014.6848641  0.706
2014 Yang SH, Hashemi MR, Berry CW, Jarrahi M. Three-dimensional plasmonic contact electrodes for high-efficiency photoconductive terahertz sources International Conference On Infrared, Millimeter, and Terahertz Waves, Irmmw-Thz. DOI: 10.1109/IRMMW-THz.2014.6956235  0.68
2014 Yardimci NT, Yang SH, Berry CW, Jarrahi M. Plasmonics enhanced terahertz radiation from large area photoconductive emitters 2014 Ieee Photonics Conference, Ipc 2014. 326-327. DOI: 10.1109/IPCon.2014.6995376  0.693
2014 Yang SH, Hashemi MR, Berry CW, Jarrahi M. High-efficiency photoconductive terahertz antennas based on high-aspect ratio plasmonic electrodes Ieee Antennas and Propagation Society, Ap-S International Symposium (Digest). 902-903. DOI: 10.1109/APS.2014.6904779  0.66
2014 Yang SH, Hashemi MR, Berry CW, Jarrahi M. 7.5% optical-to-terahertz conversion efficiency through use of three-dimensional plasmonic electrodes Conference On Lasers and Electro-Optics Europe - Technical Digest. 2014.  0.679
2013 Yang SH, Jarrahi M. Enhanced light-matter interaction at nanoscale by utilizing high-aspect-ratio metallic gratings. Optics Letters. 38: 3677-9. PMID 24104844 DOI: 10.1364/Ol.38.003677  0.593
2013 Unlu M, Berry CW, Li S, Yang SH, Hashemi MR, Jarrahi M. Electromechanically switchable diamagnetism for efficient terahertz modulation Cleo: Qels_fundamental Science, Cleo:Qels Fs 2013. QTh1A.5.  0.551
2010 Chang GE, Lu CY, Yang SH, Chuang SL. Optical characteristics of a quantum-dot laser with a metallic waveguide. Optics Letters. 35: 2373-5. PMID 20634834 DOI: 10.1364/Ol.35.002373  0.589
2009 Lu C, Chang S, Yang S, Chuang SL. Quantum-dot laser with a metal-coated waveguide under continuous-wave operation at room temperature Applied Physics Letters. 95: 233507. DOI: 10.1063/1.3272687  0.65
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