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Microwave-assisted tunneling and interference effects in superconducting junctions under fast driving signals

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arxiv 2001.08228 v1 pith:S3YTQRFR submitted 2020-01-22 cond-mat.supr-con

classification cond-mat.supr-con
keywords tunnelingdrivingfastsignalcomplexdynamicseffectsjunctions
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As scanning tunneling microscopy is pushed towards fast local dynamics, a quantitative understanding of tunnel junctions under the influence of a fast AC driving signal is required, especially at the ultra-low temperatures relevant to spin dynamics and correlated electron states. We subject a superconductor-insulator-superconductor junction to a microwave signal from an antenna mounted \textit{in situ} and examine the DC response of the contact to this driving signal. Quasi-particle tunneling and the Josephson effect can be interpreted in the framework of Tien-Gordon theory. The situation is more complex when it comes to higher order effects such as multiple Andreev reflections. Microwave assisted tunneling unravel these complex processes, providing deeper insights into tunneling than are available in a pure DC measurement.

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    eess.SP 2025-08 conditional novelty 6.0 of 10

    One kinetic equation for the charge distribution in a small Josephson junction describes both dual (quantum) and classical Shapiro steps, with the regime crossover set by a single relaxation time.

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