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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Bogoliubov dispersion relation and the possibility of superfluidity for weakly interacting photons in a two-dimensional photon fluid
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Bogoliubov dispersion relation and the possibility of superfluidity for weakly interacting photons in a two-dimensional photon fluid

机译:Bogoliubov色散关系和二维光子流体中弱相互作用光子的超流动性

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摘要

The Bogoliubov dispersion relation for the elementary excitations of the weakly interacting Bose gas is shown to hold for the case of the weakly interacting photon gas (the "photon fluid") in a nonlinear Fabry-Perot cavity. The chemical potential of a photon in the two-dimensional photon fluid does not vanish. The Bogoliubov relation, which is also derived by means of a linearized fluctuation analysis in classical nonlinear optics, implies the possibility of a new, superfluid state of light. The theory underlying an experiment in progress to observe sound waves in the photon fluid is described, and another experiment to measure the critical velocity of this superfluid is proposed. [S1050-2947(99)08411-5]. [References: 18]
机译:对于弱相互作用的玻色气体的基本激发,Bogoliubov色散关系显示为在非线性Fabry-Perot腔中的弱相互作用的光子气体(“光子流体”)的情况下成立。二维光子流体中的光子化学势不会消失。 Bogoliubov关系式也是通过经典非线性光学中的线性波动分析得出的,它暗示了可能会出现新的超流体状态。描述了正在进行的观察光子流体中声波的实验的理论,并提出了另一种测量该超流体的临界速度的实验。 [S1050-2947(99)08411-5]。 [参考:18]

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