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Dynamical quantum noise in Bose-Einstein condensates

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arxiv cond-mat/9807349 v1 pith:6ZLLAOUB submitted 1998-07-27 cond-mat.soft

classification cond-mat.soft
keywords bose-einsteincomparecondensatecondensatesdynamicalequationsevolutionnoise
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abstract

We introduce the study of dynamical quantum noise in Bose-Einstein condensates through numerical simulation of stochastic partial differential equations obtained using phase space representations. We derive evolution equations for a single trapped condensate in both the positive-$P$ and Wigner representations, and perform simulations to compare the predictions of the two methods. The positive-$P$ approach is found to be highly susceptible to the stability problems that have been observed in other strongly nonlinear, weakly damped systems. Using the Wigner representation, we examine the evolution of several quantities of interest using from a variety of choices of initial state for the condensate, and compare results to those for single-mode models.

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  1. Few-photon degenerate parametric resonance in a two-tone driven microwave resonator

    quant-ph 2026-08 conditional novelty 6.0 of 10

    Two-tone driving of a Josephson-junction Kerr oscillator creates degenerate parametric response whose quantitative features require including quantum fluctuations of the drive tones, not just a single-mode reduction.

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