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量子铁磁流体中的强偶极效应。

Strong dipolar effects in a quantum ferrofluid.

作者信息

Lahaye Thierry, Koch Tobias, Fröhlich Bernd, Fattori Marco, Metz Jonas, Griesmaier Axel, Giovanazzi Stefano, Pfau Tilman

机构信息

5. Physikalisches Institut, Universität Stuttgart, Pfaffenwaldring 57, D-70550 Stuttgart, Germany.

出版信息

Nature. 2007 Aug 9;448(7154):672-5. doi: 10.1038/nature06036.

Abstract

Symmetry-breaking interactions have a crucial role in many areas of physics, ranging from classical ferrofluids to superfluid (3)He and d-wave superconductivity. For superfluid quantum gases, a variety of new physical phenomena arising from the symmetry-breaking interaction between electric or magnetic dipoles are expected. Novel quantum phases in optical lattices, such as chequerboard or supersolid phases, are predicted for dipolar bosons. Dipolar interactions can also enrich considerably the physics of quantum gases with internal degrees of freedom. Arrays of dipolar particles could be used for efficient quantum information processing. Here we report the realization of a chromium Bose-Einstein condensate with strong dipolar interactions. By using a Feshbach resonance, we reduce the usual isotropic contact interaction, such that the anisotropic magnetic dipole-dipole interaction between 52Cr atoms becomes comparable in strength. This induces a change of the aspect ratio of the atom cloud; for strong dipolar interactions, the inversion of ellipticity during expansion (the usual 'smoking gun' evidence for a Bose-Einstein condensate) can be suppressed. These effects are accounted for by taking into account the dipolar interaction in the superfluid hydrodynamic equations governing the dynamics of the gas, in the same way as classical ferrofluids can be described by including dipolar terms in the classical hydrodynamic equations. Our results are a first step in the exploration of the unique properties of quantum ferrofluids.

摘要

破缺对称性相互作用在许多物理领域都起着至关重要的作用,从经典铁磁流体到超流³He和d波超导。对于超流量子气体,预计电偶极子或磁偶极子之间的破缺对称性相互作用会产生各种新的物理现象。对于偶极玻色子,预测了光学晶格中的新型量子相,如棋盘相或超固相。偶极相互作用还可以极大地丰富具有内部自由度的量子气体的物理性质。偶极粒子阵列可用于高效量子信息处理。在此,我们报告了具有强偶极相互作用的铬玻色 - 爱因斯坦凝聚体的实现。通过使用费什巴赫共振,我们降低了通常的各向同性接触相互作用,使得⁵²Cr原子之间的各向异性磁偶极 - 偶极相互作用在强度上变得可比。这导致了原子云纵横比的变化;对于强偶极相互作用,膨胀过程中椭圆率的反转(通常是玻色 - 爱因斯坦凝聚体的“确凿证据”)可以被抑制。通过在控制气体动力学的超流流体动力学方程中考虑偶极相互作用来解释这些效应,就像在经典流体动力学方程中包含偶极项来描述经典铁磁流体一样。我们的结果是探索量子铁磁流体独特性质的第一步。

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