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Generation of Terahertz oscillations by thin superconducting film in fluctuation regime

机译:波动状态下薄超导膜的薄赫兹振荡的产生

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摘要

Explicit analytical expressions for conductivity of a superconducting film above and below critical temperature in an arbitrary electric field are derived in the frameworks of the time dependent Ginzburg-Landau theory. It is confirmed that slightly below critical temperature the differential conductivity of superconducting film can become negative for small enough values of electric field. This fact may cause generation of electromagnetic oscillations if the superconducting film is appropriately coupled of with a resonator. Their maximal frequency is proportional to the value of critical temperature of superconducting transition. The obtained results can stimulate the development of Terahertz generators on the basis of high temperature superconducting films.
机译:在依赖于吉因堡 - Landau理论的时间框架的框架中,推导出上述超导膜的电导率的显式分析表达式,其临界电场低于临界电场。 证实,略低于临界温度,超导膜的差动导电能力对于电场的小值可能变得负。 如果超导膜与谐振器适当地耦合,则该事实可能导致电磁振荡产生电磁振荡。 它们的最大频率与超导转变的临界温度的值成比例。 获得的结果可以在高温超导膜的基础上刺激太赫兹发生器的发展。

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