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Disorder in Quantum Many-Body Systems
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2019-03-11 00:00:00 , DOI: 10.1146/annurev-conmatphys-031218-013433
Thomas Vojta 1
Affiliation  

Impurities, defects, and other types of imperfections are ubiquitous in realistic quantum many-body systems and essentially unavoidable in solid state materials. Often, such random disorder is viewed purely negatively as it is believed to prevent interesting new quantum states of matter from forming and to smear out sharp features associated with the phase transitions between them. However, disorder is also responsible for a variety of interesting novel phenomena that do not have clean counterparts. These include Anderson localization of single-particle wave functions, many-body localization in isolated many-body systems, exotic quantum critical points, and glassy ground-state phases. This brief review focuses on two separate but related subtopics in this field. First, we review under what conditions different types of randomness affect the stability of symmetry-broken low-temperature phases in quantum many-body systems and the stability of the corresponding phase transitions. Second, we discuss the fate of quantum phase transitions that are destabilized by disorder as well as the unconventional quantum Griffiths phases that emerge in their vicinity.

中文翻译:


量子多体系统中的疾病

杂质,缺陷和其他类型的缺陷在现实的量子多体系统中无处不在,而在固态材料中则不可避免。通常,这种随机无序现象被纯粹消极地看待,因为它被认为可以阻止形成有趣的物质新量子态并抹去与它们之间的相变有关的尖锐特征。但是,无序现象也导致了许多有趣的新颖现象,这些现象没有清晰的对应物。其中包括单粒子波函数的安德森定位,孤立的多体系统中的多体定位,奇异的量子临界点和玻璃态基态相。这篇简短的评论集中于该领域中两个独立但相关的子主题。第一的,我们回顾了在什么条件下不同类型的随机性会影响量子多体系统中对称破碎的低温相的稳定性以及相应相变的稳定性。其次,我们讨论了因无序而不稳定的量子相变的命运以及在其附近出现的非常规量子格里菲斯相。

更新日期:2019-03-11
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