Back to Search Start Over

Spin superfluid Josephson oscillator

Authors :
Liu, Yizhou
Barsukov, Igor
Krivorotov, Ilya
Barlas, Yafis
Lake, Roger K.
Publication Year :
2018

Abstract

The magnetic analogue of the Josephson effect can be exploited to develop a new class of nano-spin oscillators that we denote as spin superfluid Josephson oscillators. Such a device, consisting of two exchange coupled easy-plane metallic ferromagnets separated by a thin normal metal spacer, is proposed and analyzed. A spin chemical potential difference drives a $2\pi$ precession of the in-plane magnetization of each ferromagnet. The $2 \pi$ precession angle gives maximum values of the giant magnetoresistance, resulting in large output power compared to conventional spin Hall oscillators. An applied ac current results in a time-averaged magnetoresistance with Shapiro-like steps. The multistate mode-locking behavior exhibited by the spin Shapiro steps may be explored for applications in neuromorphic computing. As an experimental characterization method, electrical measurements of spin superfluid Josephson junctions can provide additional signatures of spin superfluidity.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1807.01045
Document Type :
Working Paper