Josephson Junctions as Single Microwave Photon Counters: Simulation and Characterization

Author:

Rettaroli AlessioORCID,Alesini DavidORCID,Babusci Danilo,Barone CarloORCID,Buonomo BrunoORCID,Beretta Matteo MarioORCID,Castellano GabriellaORCID,Chiarello FabioORCID,Di Gioacchino DanieleORCID,Felici Giulietto,Filatrella GiovanniORCID,Foggetta Luca GennaroORCID,Gallo Alessandro,Gatti ClaudioORCID,Ligi CarloORCID,Maccarrone Giovanni,Mattioli FrancescoORCID,Pagano SergioORCID,Tocci SimoneORCID,Torrioli GuidoORCID

Abstract

Detection of light dark matter, such as axion-like particles, puts stringent requirements on the efficiency and dark-count rates of microwave-photon detectors. The possibility of operating a current-biased Josephson junction as a single-microwave photon-detector was investigated through numerical simulations, and through an initial characterization of two Al junctions fabricated by shadow mask evaporation, done in a dilution refrigerator by measuring escape currents at different temperatures, from 40 mK up to the Al transition temperature. The escape dynamics of the junctions were reproduced in the simulation, including the dissipative effects. Inhibition of thermal activation was observed, leaving the macroscopic quantum tunneling as the dominant effect well beyond the crossover temperature.

Publisher

MDPI AG

Subject

Instrumentation

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