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Effective interactions in a quantum Bose-Bose mixture

机译:量子Bose-Bose混合物中的有效相互作用

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We generalize the Beliaev diagrammatic theory of an interacting spinless Bose-Einstein condensate to the case of a binary mixture. We derive a set of coupled Dyson equations and find analytically the Green's functions of the system. The elementary excitation spectrum consists of two branches, one of which takes the characteristic parabolic form ω ∝ p~2 in the limit of a spin-independent interaction.We observe renormalization of the magnon mass and the spin-wave velocity due to the Andreev-Bashkin entrainment effect. For a three-dimensional weakly interacting gas the spectrum can be obtained by applying the Bogoliubov transformation to a second-quantized Hamiltonian in which the microscopic two-body potentials in each channel are replaced by the corresponding off-shell scattering amplitudes. The superfluid drag density can be calculated by considering a mixture of phonons and magnons interacting via the effective potentials. We show that this problem is identical to the second-order perturbative treatment of a Bose polaron. In two dimensions the drag contributes to the magnon dispersion already in the first approximation. Our consideration provides a basis for systematic study of emergent phases in quantum degenerate Bose-Bose mixtures.
机译:我们概括了与二元混合物的静脉凝结的相互作用的无纺电筒的Beliaev图解理论。我们派生了一组耦合的戴逊方程,并在系统中找到了系统的绿色功能。基本激励谱由两个分支组成,其中一个分支是在旋转无关的相互作用的极限中取出特征抛物线形式ωαp〜2。我们观察肉质质量的重新运行和由于andreev的旋转波速度。 Baskkin夹带效果。对于三维弱相互作用的气体,可以通过将Bogoliubov变换施加到第二量化的哈密顿,其中每个通道中的微观双体电位被相应的离壳散射幅度代替。通过考虑通过有效电位相互作用的声子和氧化器的混合物,可以计算超流度拖曳密度。我们表明,这个问题与Bose Polaron的二阶扰动治疗相同。在两个维度中,拖动有助于已经在第一近似的Magnon色散。我们的考虑为量子简并培养混合物中突出阶段的系统研究提供了基础。

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