English

Many-body quantum coherence and interaction blockade in Josephson-linked Bose-Einstein condensates

Quantum Physics 2008-03-18 v3

Abstract

We study many-body quantum coherence and interaction blockade in two Josephson-linked Bose-Einstein condensates. We introduce universal operators for characterizing many-body coherence without limitations on the system symmetry and total particle number NN. We reproduce the results for both coherence fluctuations and number squeezing in {\em symmetric} systems of large NN, and reveal several peculiar phenomena that may occur in {\em asymmetric} systems and systems of small NN. For asymmetric systems, we show that, due to an interplay between asymmetry and inter-particle interaction, the coherence fluctuations are suppressed dramatically when EC/EJ1|E_{C}/E_{J}|\ll 1, and both {\it resonant tunneling} and {\it interaction blockade} take place for large values of EC/EJ|E_{C}/E_{J}|, where ECE_C and EJE_J are the interaction and tunneling energies, respectively. We emphasize that the resonant tunneling and interaction blockade may allow creating single-atom devices with promising technology applications. We demonstrate that for the systems at finite temperatures the formation of self-trapped states causes an anomalous behavior.

Keywords

Cite

@article{arxiv.0708.0253,
  title  = {Many-body quantum coherence and interaction blockade in Josephson-linked Bose-Einstein condensates},
  author = {Chaohong Lee and Libin Fu and Yuri S. Kivshar},
  journal= {arXiv preprint arXiv:0708.0253},
  year   = {2008}
}

Comments

6 pages, 5 figures, accepted for publication in EPL (Europhysics Letters)

R2 v1 2026-06-21T09:04:07.399Z