Spin–orbit interactions, time-reversal symmetry, and spin selection

A Amnon Aharony (School of Physics and Astronomy, Tel Aviv University , Tel Aviv 6997801,) O Ora Entin-Wohlman (School of Physics and Astronomy, Tel Aviv University , Tel Aviv 6997801,)

Abstract

Spin selective transport is usually associated with spin–orbit interactions. However, these interactions are invariant under time-reversal symmetry, and the Onsager relations and Bardarson’s theorem imply that such interactions cannot yield spin selectivity for transport through a junction between two electronic reservoirs. Here, we review several ways to overcome this restriction, using a Zeeman magnetic field, the Aharonov–Bohm phase, time-dependent electric fields that generate time-dependent spin–orbit interactions, time-dependent transients, more than two terminals, leakage, and more than one level per ion on the junction. Our considerations focus on the transport of noninteracting electrons at low temperatures. A possible connection with the phenomenon of chiral-induced spin selectivity is pointed out in one of the systems considered.

Article Details

Volume / Issue Vol. 162, Issue 15
Published April 21, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (2)

A

Amnon Aharony

School of Physics and Astronomy, Tel Aviv University , Tel Aviv 6997801,

O

Ora Entin-Wohlman

School of Physics and Astronomy, Tel Aviv University , Tel Aviv 6997801,