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强相互作用费米气体中的涡旋与超流性

Vortices and superfluidity in a strongly interacting Fermi gas.

作者信息

Zwierlein M W, Abo-Shaeer J R, Schirotzek A, Schunck C H, Ketterle W

机构信息

Department of Physics, MIT-Harvard Center for Ultracold Atoms, and Research Laboratory of Electronics, MIT, Cambridge, Massachusetts 02139, USA.

出版信息

Nature. 2005 Jun 23;435(7045):1047-51. doi: 10.1038/nature03858.

Abstract

Quantum degenerate Fermi gases provide a remarkable opportunity to study strongly interacting fermions. In contrast to other Fermi systems, such as superconductors, neutron stars or the quark-gluon plasma of the early Universe, these gases have low densities and their interactions can be precisely controlled over an enormous range. Previous experiments with Fermi gases have revealed condensation of fermion pairs. Although these and other studies were consistent with predictions assuming superfluidity, proof of superfluid behaviour has been elusive. Here we report observations of vortex lattices in a strongly interacting, rotating Fermi gas that provide definitive evidence for superfluidity. The interaction and therefore the pairing strength between two 6Li fermions near a Feshbach resonance can be controlled by an external magnetic field. This allows us to explore the crossover from a Bose-Einstein condensate of molecules to a Bardeen-Cooper-Schrieffer superfluid of loosely bound pairs. The crossover is associated with a new form of superfluidity that may provide insights into high-transition-temperature superconductors.

摘要

量子简并费米气体为研究强相互作用费米子提供了一个绝佳的机会。与其他费米系统,如超导体、中子星或早期宇宙的夸克-胶子等离子体不同,这些气体密度较低,其相互作用能在极大范围内得到精确控制。此前对费米气体的实验已揭示了费米子对的凝聚现象。尽管这些研究以及其他研究与假设超流性的预测相符,但超流行为的证据却一直难以获得。在此,我们报告了在强相互作用的旋转费米气体中对涡旋晶格的观测结果,这些结果为超流性提供了确凿证据。在费什巴赫共振附近,两个6Li费米子之间的相互作用以及配对强度可通过外部磁场来控制。这使我们能够探索从分子的玻色-爱因斯坦凝聚到松散束缚对的巴丁-库珀-施里弗尔超流的转变。这种转变与一种新的超流形式相关联,可能为高温超导提供见解。

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