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反铁磁自旋玻色-爱因斯坦凝聚体中的量子相变。

Quantum phase transition in an antiferromagnetic spinor Bose-Einstein condensate.

机构信息

School of Physics, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.

出版信息

Phys Rev Lett. 2011 Nov 4;107(19):195306. doi: 10.1103/PhysRevLett.107.195306.

Abstract

We have experimentally observed the dynamics of an antiferromagnetic sodium Bose-Einstein condensate quenched through a quantum phase transition. Using an off-resonant microwave field coupling the F = 1 and F = 2 atomic hyperfine levels, we rapidly switched the quadratic energy shift q from positive to negative values. At q = 0, the system undergoes a transition from a polar to antiferromagnetic phase. We measured the dynamical evolution of the population in the F = 1, mF = 0 state in the vicinity of this transition point and observed a mixed state of all 3 hyperfine components for q < 0. We also observed the coarsening dynamics of the instability for q < 0, as it nucleated small domains that grew to the axial size of the cloud.

摘要

我们通过实验观察了通过量子相变淬火的反铁磁钠玻色-爱因斯坦凝聚体的动力学。通过一个非共振微波场耦合 F = 1 和 F = 2 原子超精细能级,我们快速地将二次能量移动 q 从正值切换到负值。在 q = 0 处,系统经历了从极相到反铁磁相的转变。我们在这个相变点附近测量了 F = 1, mF = 0 态的群体动态演化,并观察到了 q < 0 时所有 3 个超精细分量的混合态。我们还观察到了 q < 0 时不稳定性的粗化动力学,它形成了小的畴并生长到云的轴向尺寸。

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