A repository & source of cutting edge news about emerging terahertz technology, it's commercialization & innovations in THz devices, quality & process control, medical diagnostics, security, astronomy, communications, applications in graphene, metamaterials, CMOS, compressive sensing, 3d printing, and the Internet of Nanothings. NOTHING POSTED IS INVESTMENT ADVICE! REPOSTED COPYRIGHT IS FOR EDUCATIONAL USE.
Showing posts with label Jae-Hyung Jang. Show all posts
Showing posts with label Jae-Hyung Jang. Show all posts
Sunday, May 13, 2018
Abstract-Vanadium dioxide based frequency tunable metasurface filters for realizing reconfigurable terahertz optical phase and polarization control
M. Tayyab Nouman, Ji Hyun Hwang, Mohd. Faiyaz, Jae-Hyung Jang,
https://www.researchgate.net/publication/324957371_Vanadium_dioxide_based_frequency_tunable_metasurface_filters_for_realizing_reconfigurable_terahertz_optical_phase_and_polarization_control
Metasurfaces are two dimensional arrays of artificial subwavelength resonators, which can manipulate the amplitude and phase profile of incident electromagnetic fields. To date, limited progress has been achieved in realizing reconfigurable phase control of incident waves using metasurfaces. Here, an active metasurface is presented, whose resonance frequency can be tuned by employing insulator to metal transition in vanadium dioxide. By virtue of the phase jump accompanied by the resonance frequency tuning, the proposed metasurface acts as a phase shifter at THz frequency. It is further demonstrated that by appropriately tailoring the anisotropy of the metasurface, the observed phase shift can be used to switch the transmitted polarization from circular to approximately linear. This work thus shows potential for reconfigurable phase and polarization control at THz frequencies using vanadium dioxide based frequency tunable metasurfaces.
Saturday, January 2, 2016
Abstract-Terahertz filter integrated with a subwavelength structured antireflection coating
Jeong Min Woo1, Dae-Seon Kim1, Dong-Ju Kim1 and Jae-Hyung Jang1,a)
a) Electronic mail: jjang@gist.ac.kr.
Micro-pyramid shaped subwavelength structures (SWSs) were integrated on both sides of a terahertz (THz) filter by means of stamping methods. Two silicon-based stamping molds fabricated via crystallographic wet etching were utilized to replicate SWSs onto cyclo-olefin copolymer (COC) films coated onto both sides of a THz filter at the same time. The SWSs act as an broadband antireflection coating to reduce the surfacereflection loss in a frequency range of 0.2 THz to 1.4 THz. Compared to a THz filter without SWSs, the filter integrated with double-sided SWSs exhibits a low standing wave ratio inside the substrate and THz signal transmission enhancement of up to 10.8%.
Wednesday, August 29, 2012
Abstract-Dual-band terahertz metamaterials based on nested split ring resonators
Sajid Hussain1, Jeong Min Woo2, and Jae-Hyung Jang1,2
1Department of WCU Nanobio Materials and Electronics, Gwangju Institute of Science and Technology, 1 Oryong Dong, Buk-gu, Gwangju 500-712, South Korea
2Department of Information and Communications, Gwangju Institute of Science and Technology, 1 Oryong Dong, Buk-gu, Gwangju 500-712, South Korea
2Department of Information and Communications, Gwangju Institute of Science and Technology, 1 Oryong Dong, Buk-gu, Gwangju 500-712, South Korea
Two dual-band terahertz metamaterials based on nested split ring resonators (SRRs) were designed and fabricated on a flexible plastic substrate. Each nested SRR structure composed of two electric field coupled resonators exhibited two transmission minimums, which inherently come from the LC resonances of the respective SRRs. The primary and secondary resonance frequencies can be individually fine-tuned by adjusting the geometry of the respective resonator. The fabricated devices exhibited very low insertion loss of 3 dB in the transmission band and the high attenuation of 27 dB in the stop band.
© 2012 American Institute of Physics
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