Quantum effective action for the bosonic Josephson junction
Quantum Gases
2022-04-15 v3 Superconductivity
Abstract
We investigate a bosonic Josephson junction by using the path-integral formalism with relative phase and population imbalance as dynamical variables. We derive an effective only-phase action performing functional integration over the population imbalance. We then analyze the quantum effective only-phase action, which formally contains all the quantum corrections. To the second order in the derivative expansion and to the lowest order in , we obtain the quantum correction to the Josephson frequency of oscillation. Finally, the same quantum correction is found by adopting an alternative approach. Our predictions are a useful theoretical tool for experiments with atomic or superconducting Josephson junctions.
Keywords
Cite
@article{arxiv.2112.13231,
title = {Quantum effective action for the bosonic Josephson junction},
author = {Koichiro Furutani and Jacques Tempere and Luca Salasnich},
journal= {arXiv preprint arXiv:2112.13231},
year = {2022}
}
Comments
7 pages; published version