Showing posts with label terahertz optoelectronics. Show all posts
Showing posts with label terahertz optoelectronics. Show all posts

Wednesday, April 11, 2018

Abstract-Second order nonlinear optical processes in [111] cubic crystals for terahertz optoelectronics



G. GABORIT, F. SANJUAN, J.L. COUTAZ

http://www.lmaleidykla.lt/ojs/index.php/physics/article/view/3649

In this paper, we give an overview of emission and detection of terahertz electromagnetic pulses using, respectively, optical rectification and electro-optic effect in [111] zinc blende crystals. This crystal orientation allows us to generate and read any polarization state of the THz beam only by controlling the polarization state of the laser beam that excites or probes the emitting and receiving crystals. This technique is very useful for polarimetric terahertz spectroscopic studies.

Friday, October 20, 2017

Abstract-Topological-insulator-based terahertz modulator



X. B. Wang, L. Cheng, Y. Wu, D. P. Zhu, L. Wang, Jian-Xin Zhu, Hyunsoo Yang, Elbert E. M. Chia


Three dimensional topological insulators, as a new phase of quantum matters, are characterized by an insulating gap in the bulk and a metallic state on the surface. Particularly, most of the topological insulators have narrow band gaps, and hence have promising applications in the area of terahertz optoelectronics. In this work, we experimentally demonstrate an electronically-tunable terahertz intensity modulator based on Bi1:5Sb0:5Te1:8Se1:2 single crystal, one of the most insulating topological insulators. A relative frequency-independent modulation depth of ~62% over a wide frequency range from 0.3 to 1.4 THz has been achieved at room temperature, by applying a bias current of 100 mA. The modulation in the low current regime can be further enhanced at low temperature. We propose that the extraordinarily large modulation is a consequence of thermally-activated carrier absorption in the semiconducting bulk states. Our work provides a new application of topological insulators for terahertz technology