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Unified Picture of Superfluidity: From Bogoliubov's Approximation to Popov's Hydrodynamic Theory

机译:超流动的统一图景:从Bogoliubov的近似到Popov的流体力学理论

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Using a nonperturbative renormalization-group technique, we compute the momentum and frequency dependence of the anomalous self-energy and the one-particle spectral function of two-dimensional interacting bosons at zero temperature. Below a characteristic momentum scale k_G, where the Bogoliubov approximation breaks down, the anomalous self-energy develops a square-root singularity and the Goldstone mode of the superfluid phase (Bogoliubov sound mode) coexists with a continuum of excitations, in agreement with the predictions of Popov's hydrodynamic theory. Thus our results provide a unified picture of superfluidity in interacting boson systems and connect Bogoliubov's theory (valid for momenta larger than k_G) to Popov's hydrodynamic approach.
机译:使用非摄动重归一化组技术,我们计算了异常自能量的动量和频率依赖性以及零温度下二维相互作用玻色子的单粒子光谱函数。在Bogoliubov近似分解的特征动量尺度k_G之下,异常自能量发展出平方根奇异性,超流体相的Goldstone模式(Bogoliubov声音模式)与激发的连续体共存,与预测一致波波夫的流体力学理论。因此,我们的结果为相互作用的玻色子系统提供了超流的统一图景,并将Bogoliubov的理论(对大于k_G的矩有效)与Popov的流体力学方法联系起来。

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