Archive | 2021

Characterization of Shapiro steps in the presence of a 4π-periodic Josephson current

 
 
 
 

Abstract


The Majorana zero-energy modes (MZMs) residing at the boundary of topological superconductors have attracted a great deal of interest recently, as they provide a platform to explore fundamental physics such as non-Abelian statistics, as well as fault-tolerant quantum computation. Period doubling of Shapiro steps in a Josephson junction under microwave irradiation has been regarded as strong evidence for the emergence of the MZMs at the junction edges. However, questions remain as to how the Shapiro steps respond to the presence of a 4πperiodic Josephson current. In this study, we investigated the characteristic features of Shapiro steps with respect to the ratio (α) of the 4π-periodic current to the topologically trivial 2πperiodic one, as well as the reduced microwave frequency Ω and McCumber parameter β of the junction. Our analysis reproduced Shapiro steps similar to those observed experimentally for specific parameter sets of α, Ω ≲ 0.1 , and β ≳ 1.0 . Full suppression of the first lobe of the n 1 step guarantees the presence of a 4π-periodic Josephson current. In addition, we discuss the range of Ω and β needed for full suppression of the first lobe of the n 1 step, even for small α 0.1 . To observe “period-doubled Shapiro steps”, even with a small α, the junction should have a large I R product and sufficiently large junction capacitance.

Volume None
Pages None
DOI 10.1103/PhysRevB.103.235428
Language English
Journal None

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