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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Acousto-exciton interaction in a gas of 2D indirect dipolar excitons in the presence of disorder
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Acousto-exciton interaction in a gas of 2D indirect dipolar excitons in the presence of disorder

机译:在存在障碍的情况下,二维间接偶极激子气体中的声激子相互作用

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摘要

A theory for the linear and quadratic responses of a 2D gas of indirect dipolar excitons to an external surface acoustic wave perturbation in the presence of a static random potential is considered. The theory is constructed both for high temperatures, definitely greater than the exciton gas condensation temperature, and at zero temperature by taking into account the Bose-Einstein condensation effects. The particle Green functions, the density-density correlation function, and the quadratic response function are calculated by the "cross" diagram technique. The results obtained are used to calculate the absorption of Rayleigh surface waves and the acoustic exciton gas drag by a Rayleigh wave. The damping of Bogoliubov excitations in an exciton condensate due to theirs scattering by a random potential has also been determined.
机译:考虑了在静态随机电位的存在下,间接偶极激子的2D气体对外表面声波扰动的线性和二次响应的理论。考虑到玻色-爱因斯坦的凝聚效应,该理论既适用于高温(绝对高于激子气体的凝结温度),也适用于零温度。粒子格林函数,密度-密度相关函数和二次响应函数是通过“交叉”图技术计算的。获得的结果用于计算瑞利表面波的吸收和瑞利波对声激子气体的阻力。还确定了由于激子的随机势散射,激子凝聚物中Bogoliubov激振的阻尼。

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