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 D. A. Firsov. Show all posts
Showing posts with label D. A. Firsov. Show all posts
Wednesday, November 20, 2019
Abstract-Selective terahertz emission due to electrically excited 2D plasmons in AlGaN/GaN heterostructure
V. A. Shalygin, M. D. Moldavskaya, M. Ya. Vinnichenko, K. V. Maremyanin, A. A. Artemyev, V. Yu. Panevin, L. E. Vorobjev, D. A. Firsov, V. V. Korotyeyev, A. V. Sakharov, E. E. Zavarin, D. S. Arteev, W. V. Lundin, A. F. Tsatsulnikov, S. Suihkonen, C. Kauppinen
https://aip.scitation.org/doi/10.1063/1.5118771
Terahertz radiation emission from an electrically excited AlGaN/GaN heterostructure with a surface metal grating was studied under conditions of two-dimensional (2D) electron heating by the lateral electric field. Intensive peaks related to nonequilibrium 2D plasmons were revealed in the terahertz emission spectra with up to 4 times selective amplification of the radiation emission in the vicinity of 2D plasmon resonance. This selective emission was shown to be frequency-controllable by the grating period. Exact spectral positions of the 2D plasmon resonances were preliminarily experimentally detected with the help of equilibrium transmission spectra measured at various temperatures. The resonance positions are in a satisfactory agreement with the results of theoretical simulation of the transmission spectra performed using a rigorous solution of Maxwell’s equations. The effective temperature of hot 2D electrons was determined by means of – characteristics and their analysis using the power balance equation. It was shown that for a given electric field, the effective temperature of nonequilibrium 2D plasmons is close to the hot 2D electron temperature. The work may have applications in GaN-based electrically pumped emitters of terahertz radiation.
Wednesday, July 6, 2016
Abstract-Terahertz emission from CdHgTe/HgTe quantum wells with an inverted band structure
- G. Yu. Vasilyeva
- , Yu. L. Ivánov
- , A. O. Zakhar’in
- , A. V. Andrianov
- , L. E. Vorobiev
- , D. A. Firsov
- , M. N. Grigoriev
- , A. V. Antonov
- , A. V. Ikonnikov
- , V. I. Gavrilenko,
The terahertz electroluminescence from Cd0.7Hg0.3Te/HgTe quantum wells with an inverted band structure in lateral electric fields is experimentally detected and studied. The emission-spectrum maximum for wells 6.5 and 7 nm wide is near 6 meV which corresponds to interband optical transitions. The emission is explained by state depletion in the valence band and conduction band filling due to Zener tunneling, which is confirmed by power-law current–voltage characteristics.
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