论文标题
零模式的多体定位
Many-body localization of zero modes
论文作者
论文摘要
著名的戴森奇异性信号表明,单粒子波函数的相对离域在具有手性对称性的无序系统的零能对称点上。在这里,我们表明,相互作用的量子系统中的类似零模式可以完全定位在足够大的疾病处,但与非零模式相比,其真实空间和Fock空间的定位特征的意义不大。我们在一个自旋-1 Ising链中证明了这种效果,该链自然地在奇异的希尔伯特空间中提供了手性对称性,从而确保在所有混乱的强度下都存在多体零模式。在局部阶段,零模式的两部分纠缠熵遵循区域定律,但与非零模式相比,零模式的订单统一因素可以增强。从分析上,此功能可以归因于相邻自旋上特定的零模式杂交模式。零模式还显示了对称诱导的偶数偶数和自旋取向的激发片段,其特征是真实空间自旋相关函数,该功能概括了非互动系统中拓扑零模式的Sublattice偏振,并保持在任何混乱强度下。
The celebrated Dyson singularity signals the relative delocalization of single-particle wave functions at the zero-energy symmetry point of disordered systems with a chiral symmetry. Here we show that analogous zero modes in interacting quantum systems can fully localize at sufficiently large disorder, but do so less strongly than nonzero modes, as signifed by their real-space and Fock-space localization characteristics. We demonstrate this effect in a spin-1 Ising chain, which naturally provides a chiral symmetry in an odd-dimensional Hilbert space, thereby guaranteeing the existence of a many-body zero mode at all disorder strengths. In the localized phase, the bipartite entanglement entropy of the zero mode follows an area law, but is enhanced by a system-size-independent factor of order unity when compared to the nonzero modes. Analytically, this feature can be attributed to a specific zero-mode hybridization pattern on neighboring spins. The zero mode also displays a symmetry-induced even-odd and spin-orientation fragmentation of excitations, characterized by real-space spin correlation functions, which generalizes the sublattice polarization of topological zero modes in noninteracting systems, and holds at any disorder strength.