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Spontaneous formation and relaxation of spin domains in antiferromagnetic spin-1 condensates

机译:反铁磁spin-1冷凝物中自旋域的自发形成和弛豫

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摘要

Many-body systems at low temperatures generally organize themselves into ordered phases, whose nature and symmetries are captured by an order parameter. This order parameter is spatially uniform in the simplest cases, for example the macroscopic magnetization of a ferromagnetic material. Non-uniform situations also exist in nature, for instance in antiferromagnetic materials, where the magnetization alternates in space, or in the so-called stripe phases emerging for itinerant electrons in strongly correlated materials. Understanding such inhomogeneously ordered states is of central importance in many-body physics. Here we study experimentally the magnetic ordering of itinerant spin-1 bosons in inhomegeneous spin domains at nano-Kelvin temperatures. We demonstrate that spin domains form spontaneously, that is purely because of the antiferromagnetic interactions between the atoms and in the absence of external magnetic forces, after a phase separation transition. Furthermore, we explore how the equilibrium domain configuration emerges from an initial state prepared far from equilibrium.
机译:低温下的多体系统通常将自己组织成有序的相,其性质和对称性由有序参数捕获。在最简单的情况下,例如铁磁材料的宏观磁化,该阶次参数在空间上是均匀的。自然界中也存在不均匀的情况,例如在反铁磁材料中,磁化强度在空间中交替变化,或者在强相关材料中为流动电子而出现的所谓条纹相中。了解这种非均匀有序状态在多体物理学中至关重要。在这里,我们通过实验研究了纳米开尔文温度下非均质自旋域中巡回旋spin-1玻色子的磁排序。我们证明自旋域是自发形成的,这纯粹是因为在相分离过渡之后原子之间存在反铁磁相互作用并且在没有外部磁力的情况下。此外,我们探索平衡域构型如何从远离平衡的初始状态中出现。

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