Doggen Elmer V H, Kinnunen Jami J
COMP Centre of Excellence and Department of Applied Physics, Aalto University, FI-00076 Aalto, Finland.
Sci Rep. 2015 May 5;5:9539. doi: 10.1038/srep09539.
We consider a recent momentum-resolved radio-frequency spectroscopy experiment, in which Fermi liquid properties of a strongly interacting atomic Fermi gas were studied. Here we show that by extending the Brueckner-Goldstone model, we can formulate a theory that goes beyond basic mean-field theories and that can be used for studying spectroscopies of dilute atomic gases in the strongly interacting regime. The model hosts well-defined quasiparticles and works across a wide range of temperatures and interaction strengths. The theory provides excellent qualitative agreement with the experiment. Comparing the predictions of the present theory with the mean-field Bardeen-Cooper-Schrieffer theory yields insights into the role of pair correlations, Tan's contact, and the Hartree mean-field energy shift.
我们考虑了最近一项动量分辨射频光谱实验,其中研究了强相互作用原子费米气体的费米液体性质。在此我们表明,通过扩展布鲁克纳 - 戈德斯通模型,我们可以构建一种超越基本平均场理论的理论,该理论可用于研究强相互作用 regime 中稀薄原子气体的光谱。该模型具有明确的准粒子,并且在广泛的温度和相互作用强度范围内都适用。该理论与实验给出了出色的定性一致性。将本理论的预测与平均场巴丁 - 库珀 - 施里弗理论进行比较,可深入了解配对关联、谭接触以及哈特里平均场能量 shift 的作用。