Currents in a Quantum Nanoring Controlled by Non-Classical Electromagnetic Field

Entropy (Basel). 2021 May 23;23(6):652. doi: 10.3390/e23060652.

Abstract

Quantum ring accommodating interacting spin-less fermions threaded by magnetic flux with a non-classical component added to a static, inducing persistent current, is considered. It is investigated how current flowing in the ring becomes affected by a state of non-classical flux and how Coulomb interaction between fermions influences entanglement of quantum ring and the driving field. In particular it is shown that in an absence of decoherence and under certain conditions fermion-fermion interaction is necessary for a ring-field entanglement to occur.

Keywords: entanglement; non-classical electromagnetic field; persistent current; quantum ring.