论文标题

拓扑挫折引起的量子相变

Quantum Phase Transition induced by Topological Frustration

论文作者

Marić, Vanja, Giampaolo, Salvatore Marco, Franchini, Fabio

论文摘要

在具有局部相互作用的量子多体系统中,至少对于足够大的系统,边界条件的影响被认为可以忽略不计。在这里,我们展示了相反的示例。我们考虑了一个具有两个竞争相互作用的自旋链,该链条设置在带有奇数位点的环上。当只有主要的相互作用是抗磁磁性的,从而引起拓扑挫败感时,标准的抗铁磁阶(用磁化表示)被破坏。当第二个相互作用从铁将变为抗菌时,出现了以位点依赖性磁化为特征的抗磁磁性阶,出现了空间变化,随着空间的变化,出现了。该调节是由基态堕落元素引起的,这使得破坏了翻译不变性。两种情况之间的过渡是通过基态能量的第一个衍生物中的不连续性发出信号,代表了由特殊的边界条件选择引起的量子相变。

In quantum many-body systems with local interactions, the effects of boundary conditions are considered to be negligible, at least for sufficiently large systems. Here we show an example of the opposite. We consider a spin chain with two competing interactions, set on a ring with an odd number of sites. When only the dominant interaction is antiferromagnetic, and thus induces topological frustration, the standard antiferromagnetic order (expressed by the magnetization) is destroyed. When also the second interaction turns from ferro to antiferro, an antiferromagnetic order characterized by a site-dependent magnetization which varies in space with an incommensurate pattern, emerges. This modulation results from a ground state degeneracy, which allows to break the translational invariance. The transition between the two cases is signaled by a discontinuity in the first derivative of the ground state energy and represents a quantum phase transition induced by a special choice of boundary conditions.

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