论文标题

在甲状腺素和随机疾病的存在下相互作用的玻色子的相特性

Phase Properties of Interacting Bosons in Presence of Quasiperiodic and Random Disorder

论文作者

Nabi, Sk Noor, Roy, Shilpi, Basu, Saurabh

论文摘要

由两种不同类型的疾病激励,这些疾病发生在普遍存在的量子系统中,即随机和准二疾病(QP)疾病,我们对与二维方晶格中相互作用的玻色子系统相互作用的两种情况的新兴相特性进行了系统比较。这样的比较是必须的,因为每个晶格处的随机疾病是完全不相关的,而准碘疾病本质上是确定性的。使用现场分离的平均场近似值,然后在Bosehubbard模型上进行渗透分析,例如,实现了几个不同的阶段,例如熟悉的Bose-Glass(BG),Mott Insulator(MI),Superfluid(SF)阶段,以及此外,我们观察到与QP疾病的混合阶段,我们呼吁QP疾病阶段。顺便说一句,QP疾病比随机疾病的情况更有效地稳定BG阶段。此外,我们已经采用了有限尺寸的缩放分析来通过计算临界过渡点和相应的关键指数来表征各种相变。结果表明,对于两种类型的疾病,从BG阶段到SF阶段的过渡属于同一普遍性类别。但是,QP疾病的SF过渡的QM由不同的关键指数组成,从而暗示了其中不同普遍性类别的参与。发现描述所有各种相变为疾病强度的函数的关键指数与文献中可用的量子蒙特卡罗结果非常吻合。

Motivated by two different types of disorder that occur in quantum systems with ubiquity, namely, the random and the quasiperiodic (QP) disorder, we have performed a systematic comparison of the emerging phase properties corresponding to these two cases for a system of interacting bosons in a two dimensional square lattice. Such a comparison is imperative as a random disorder at each lattice is completely uncorrelated, while a quasiperiodic disorder is deterministic in nature. Using a site decoupled mean-field approximation followed by a percolation analysis on a BoseHubbard model, several different phases are realized, such as the familiar Bose-glass (BG), Mott insulator (MI), superfluid (SF) phases, and, additionally, we observe a mixed phase, specific to the QP disorder, which we call as a QM phase. Incidentally, the QP disorder stabilizes the BG phase more efficiently than the case of random disorder. Further, we have employed a finite-size scaling analysis to characterize various phase transitions via computing the critical transition points and the corresponding critical exponents. The results show that for both types of disorder, the transition from the BG phase to the SF phase belongs to the same universality class. However, the QM to the SF transition for the QP disorder comprises of different critical exponents, thereby hinting at the involvement of a different universality class therein. The critical exponents that depict all the various phase transitions occurring as a function of the disorder strength are found to be in good agreement with the quantum Monte-Carlo results available in the literature.

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