Showing posts with label F. V. Kusmartsev. Show all posts
Showing posts with label F. V. Kusmartsev. Show all posts

Wednesday, March 4, 2020

Abstract-Optical Transistor for Amplification of Radiation in a Broadband Terahertz Domain



K. H. A. Villegas, F. V. Kusmartsev, Y. Luo, and I. G. Savenko
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We propose a new type of optical transistor for a broadband amplification of terahertz radiation. It is made of a graphene-superconductor hybrid, where electrons and Cooper pairs couple by Coulomb forces. The transistor operates via the propagation of surface plasmons in both layers, and the origin of amplification is the quantum capacitance of graphene. It leads to terahertz waves amplification, the negative power absorption, and as a result, the system yields positive gain, and the hybrid acts like an optical transistor, operating with the terahertz light. It can, in principle, amplify even a whole spectrum of chaotic signals (or noise), which is required for numerous biological applications.
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Thursday, February 14, 2019

Abstract-Bridging the terahertz gap for chaotic sources with superconducting junctions



D. R. Gulevich, V. P. Koshelets, and F. V. Kusmartsev

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We observe a broadband chaotic signal of terahertz frequency emitted from a superconducting junction. The generated radiation has a wide spectrum reaching 0.7 THz and power sufficient to drive on-chip circuit elements. Our experimental finding is fully confirmed by numerical modeling based on microscopic theory and reveals the unrealized potential of superconducting systems in chaos-based terahertz communication, fast generation of true random numbers, and noninvasive terahertz spectroscopy.
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