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首页> 外文期刊>Physica, C. Superconductivity and its applications >Terahertz electromagnetic-wave detector using Nb-based superconducting tunnel junction on LiNbO3 substrate absorber
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Terahertz electromagnetic-wave detector using Nb-based superconducting tunnel junction on LiNbO3 substrate absorber

机译:在LiNbO3衬底吸收体上使用基于Nb的超导隧道结的太赫兹电磁波探测器

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摘要

We have been developing terahertz (THz) wave detectors using superconducting tunnel junctions (STJs). The STJs consist of the Nb/ Al/AlOx/Al/Nb structure. We fabricated THz-wave detectors on LiNbO3 substrates that have a high absorption coefficient for the frequency range of 10(12) Hz. Two kinds of signals were detected when the THz-wave was irradiated from the substrate side. One was an indirect signal related to the generation of phonons. The other was a signal that corresponds to directly generated quasi-particles in the Nb electrode of the STJ. The pulse height of the indirect signal was larger than that of the latter signal. To enlarge the detector area, we designed a STJ that has different areas of the base electrode and top electrode. In this paper, the characteristics of the THz-wave detector area will be discussed. (C) 2007 Elsevier B.V. All rights reserved.
机译:我们一直在使用超导隧道结(STJ)开发太赫兹(THz)检波器。 STJ由Nb / Al / AlOx / Al / Nb结构组成。我们在LiNbO3基板上制造了太赫兹波探测器,该探测器在10(12)Hz频率范围内具有高吸收系数。从基板侧照射太赫兹波时,检测到两种信号。一个是与声子产生有关的间接信号。另一个是与STJ的Nb电极中直接生成的准粒子相对应的信号。间接信号的脉冲高度大于后者的脉冲高度。为了扩大检测器的面积,我们设计了一个STJ,其底部电极和顶部电极的面积不同。在本文中,将讨论太赫兹波检测器区域的特性。 (C)2007 Elsevier B.V.保留所有权利。

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