Terahertz Oscillating Devices Based Upon the Intrinsic Josephson Junctions in a High Temperature Superconductor

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作者
Kaveh Delfanazari
Hidehiro Asai
Manabu Tsujimoto
Takanari Kashiwagi
Takeo Kitamura
Kazuya Ishida
Chiharu Watanabe
Shunsuke Sekimoto
Takashi Yamamoto
Hidetoshi Minami
Masashi Tachiki
Richard A. Klemm
Toshiaki Hattori
Kazuo Kadowaki
机构
[1] University of Tsukuba,Graduate School of Pure and Aplied Sciences
[2] CREST-JST,Electronics and Photonics Research Institute
[3] WPI-MANA,Semiconductor Analysis and Radiation Effects Group
[4] The National Institute of Advanced Industrial Science and Technology (AIST),Department of Physics
[5] Japan Atomic Energy Agency,Optoelectronics Research Centre
[6] University of Central Florida,undefined
[7] University of Southampton,undefined
关键词
Superconductor; Intrinsic Josephson junctions; Ac-Josephson effect; Terahertz wave; Cavity resonance;
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摘要
Recent developments of coherent terahertz (THz) oscillators based on the intrinsic Josephson junctions (IJJs) in mesas of the high temperature superconductor Bi2Sr2CaCu2O8+δ are reviewed. Experimental and theoretical studies of the emission from equilateral, right-angled isosceles, and acute isosceles triangular mesas are compared with those obtained from rectangular, square, and disk mesas, in order to determine the role of the mesa geometry. The superconducting properties and emission frequency f spectra are presented for a variety of triangular mesa geometries. Analytic and finite difference time domain numerical calculations of the emissions from the internal electromagnetic (EM) cavity modes of triangular mesas are compared with experiment. The experimental f always satisfies the ac Josephson relation, and its narrow linewidth arises from the synchronized emissions from many IJJs. For some mesa geometries, f also strongly locks onto an EM cavity mode frequency, enhancing the emission’s stability and output power. For other geometries, such cavity mode locking is weak, and f is highly tunable.
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页码:131 / 146
页数:15
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