Masaq Index
arXiv 2014-06-26 DOI 10.1209/0295-5075/108/37002 0 views

Gate-controlled supercurrent reversal in MoS₂-based Josephson junctions

Rameshti, Babak Zare · Moghaddam, Ali G. · Zareyan, Malek

Original · EN

Motivated by recent experiments revealing superconductivity in MoS₂, we investigate the Josephson effect in the monolayer MoS₂ at the presence of an exchange splitting. We show that the supercurrent reversal known as 0-π transition can occur by varying the doping via gate voltages. This is in contrast to common superconductor/ferromagnet/superconductor junctions in which successive 0-π transition take place with the variation of junction length or temperature. In fact for the case of MoS₂ we find that both the amplitude and the period of oscillations show a dependence on the doping which explains the predicted doping induced supercurrent reversal. These effects comes from the dependence of density and Fermi velocity on the doping strength beside the intrinsic spin splitting in the valence band which originates from spin-orbit interaction.

English translation

This paper has no Arabic translation yet. Be the first: it takes a few seconds, and the result is stored for every future reader.

Security check

Type the characters above

Up to 10 translations per person per day.