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Deep Inelastic Scattering on Ultracold Gases

机译:超薄气体深入弹性散射

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We discuss Bragg scattering on both Bose and Fermi gases with strong short-range interactions in the deep inelastic regime of large wave vector transfer q , where the dynamic structure factor is dominated by a resonance near the free-particle energy ? ω = ? q = ? 2 q 2 / 2 m . Using a systematic short-distance expansion, the structure factor at high momentum is shown to exhibit a nontrivial dependence on frequency characterized by two separate scaling regimes. First, for frequencies that differ from the single-particle energy by terms of order O ( q ) (i.e., small deviations compared to the single-particle energy), the dynamic structure factor is described by the impulse approximation of Hohenberg and Platzman. Second, deviations of order O ( q 2 ) (i.e., of the same order or larger than the single-particle energy) are described by the operator product expansion, with a universal crossover connecting both regimes. The scaling is consistent with the leading asymptotics for a number of sum rules in the large momentum limit. Furthermore, we derive an exact expression for the shift and width of the single-particle peak at large momentum due to interactions, thus extending a result by Beliaev [ J. Exp. Theor. Phys. 7, 299 (1958)] for the low-density Bose gas to arbitrary values of the scattering length a . The shift exhibits a maximum around q a ? 1 , which is connected with a maximum in the static structure factor due to strong short-range correlations. For Bose gases with moderate interaction strengths, the theoretically predicted shift is consistent with the value observed by Papp et?al. [ Phys. Rev. Lett. 101, 135301 (2008) ]. Finally, we develop a diagrammatic theory for the dynamic structure factor which accounts for the correlations beyond Bogoliubov theory. It covers the full range of momenta and frequencies and provides an explicit example for the emergence of asymptotic scaling at large momentum.
机译:我们讨论BRAGG散射在BOSE和FERMI气体上,在大波形矢量转移Q的深非弹性方案中具有强的短距离相互作用,其中动态结构因子由自由粒子能量附近的共振主导? ω=? q =? 2 q 2/2 m。使用系统的短距离展开,在高动量下的结构因子显示出对频率的非依赖性,其特征在于两个单独的缩放制度。首先,对于通过订单O(Q)(即,与单粒子能相比的小偏差小的单粒子能量不同的频率,通过Hohenberg和Platzman的脉冲近似来描述动态结构因子。其次,通过操作员产品扩展描述了订单O(Q 2)(即相同顺序或大于单粒子能量的顺序或大于单粒子能的偏差),其具有连接两个制度的通用交叉。缩放与在大动量限制的许多和规则中的前导渐近符合。此外,我们由于相互作用而导致单粒子峰的换档和宽度的精确表达,从而通过Beliaev将结果延长[J.Pox。你。物理。 7,299(1958)]对于低密度瓶气到散射长度的任意值a。换档呈现最大Q A?如图1所示,如强的短距离相关性,在静态结构因子中的最大值连接。对于具有中等相互作用强度的瓶气,理论上预测的转变与PAPP等人观察的值一致。 [物理。 rev. lett。 101,135301(2008)]。最后,我们开发了一种用于动态结构因素的示意性理论,其占Bogoliubov理论超出的相关性。它涵盖了全部一系列动量和频率,并为大动势的渐近缩放的出现提供了明确的例子。

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