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Quantum-field dynamics of expanding and contracting Bose-Einstein condensates

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Authors

Wuester, Sebastian
Dabrowska-Wuster, Beata
Scott, Susan M
Close, John
Savage, Craig

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American Physical Society

Abstract

We analyze the dynamics of quantum statistics in a harmonically trapped Bose-Einstein condensate, whose two-body interaction strength is controlled via a Feshbach resonance. From an initially noninteracting coherent state, the quantum field undergoes Kerr squeezing, which can be qualitatively described with a single mode model. To render the effect experimentally accessible, we propose a homodyne scheme, based on two h2008 The American Physical Societyyperfine components, which converts the quadrature squeezing into number squeezing. The scheme is numerically demonstrated using a two-component Hartree-Fock-Bogoliubov formalism.

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Physical Review A: Atomic, Molecular and Optical Physics

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2037-12-31
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