论文标题

挫败感引起的新兴希尔伯特太空碎片

Frustration-induced emergent Hilbert space fragmentation

论文作者

Lee, Kyungmin, Pal, Arijeet, Changlani, Hitesh J.

论文摘要

尽管大多数量子系统在与初始条件无关的短时间尺度上在本地进行热元,但最近的发展表明并非总是如此。晶格的几何形状和量子力学可以共同产生受约束的量子动力学和相关的玻璃性行为,这种现象落在了本征态热假说的标准之外。约束“碎片”多体希尔伯特空间,某些状态仍然与其他状态保持隔离,并且该系统无法达到热平衡。这种碎片化是几何沮丧的磁铁的标志,具有低能的“ icelike歧管”,在不同初始状态下表现出广泛的放松时间。着眼于高度沮丧的Kagome晶格,我们在Balents-Fisher-Girvin Hamiltonian(Easy轴心制度)和三色模型(易于平面式)中展示了这些现象,均为受限制的希尔伯特空间。我们研究了他们的水平统计数据和放松动力学,以在Kagome晶格上以XXZ模型的各种限制开发碎片的连贯图片。

Although most quantum systems thermalize locally on short time scales independent of initial conditions, recent developments have shown this is not always the case. Lattice geometry and quantum mechanics can conspire to produce constrained quantum dynamics and associated glassy behavior, a phenomenon that falls outside the rubric of the eigenstate thermalization hypothesis. Constraints "fragment" the many-body Hilbert space due to which some states remain insulated from others and the system fails to attain thermal equilibrium. Such fragmentation is a hallmark of geometrically frustrated magnets with low-energy "icelike manifolds" exhibiting a broad range of relaxation times for different initial states. Focusing on the highly frustrated kagome lattice, we demonstrate these phenomena in the Balents-Fisher-Girvin Hamiltonian (easy-axis regime), and a three-coloring model (easy-plane regime), both with constrained Hilbert spaces. We study their level statistics and relaxation dynamics to develop a coherent picture of fragmentation in various limits of the XXZ model on the kagome lattice.

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