ARC Centre of Excellence for Quantum-Atom Optics, Swinburne University of Technology, Melbourne 3122, Australia.
Phys Rev Lett. 2010 Jun 18;104(24):240407. doi: 10.1103/PhysRevLett.104.240407.
The Bose-Einstein condensate to Bardeen-Cooper-Schrieffer crossover in ultracold Fermi gases creates an ideal environment to enrich our knowledge of many-body systems. It is relevant to a wide range of fields from condensed matter to astrophysics. The nature of pairing in strongly interacting Fermi gases can be readily studied. This aids our understanding of related problems in high-Tc superconductors, whose mechanism is still under debate due to the large interaction parameter. Here, we calculate the dynamical properties of a normal, trapped strongly correlated Fermi gas, by developing a quantum cluster expansion. Our calculations for the single-particle spectral function agree with recent rf spectroscopy measurements, and clearly demonstrate pseudogap pairing in the strongly interacting regime.
玻色-爱因斯坦凝聚到玻色-库珀-施里弗超导相变在超冷费米气体中创造了一个丰富多体系统知识的理想环境。它与从凝聚态物质到天体物理学的广泛领域都有关联。强相互作用费米气体中的配对性质可以很容易地进行研究。这有助于我们理解高温超导材料中的相关问题,由于相互作用参数较大,其机制仍存在争议。在这里,我们通过开发量子团簇展开,计算了囚禁的强关联费米气体的动力学性质。我们对单粒子能谱函数的计算与最近的射频光谱测量结果一致,并清楚地显示了强相互作用区域中的赝能隙配对。