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首页> 外文期刊>Physical review >Quantum Hall phase diagram of half-filled bilayers in the lowest and the second orbital Landau levels: Abelian versus non-Abelian incompressible fractional quantum Hall states
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Quantum Hall phase diagram of half-filled bilayers in the lowest and the second orbital Landau levels: Abelian versus non-Abelian incompressible fractional quantum Hall states

机译:最低和第二层轨道朗道半填充双层的量子霍尔相图:阿贝尔和非阿贝尔不可压缩分数量子霍尔态

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We examine the quantum phase diagram of the fractional quantum Hall effect (FQHE) in the lowest two Landau levels in half-filled bilayer structures as a function of tunneling strength and layer separation, i.e., we revisit the lowest Landau-level filling factor 1/2 bilayer problem and make predictions involving bilayers in the half-filled second Landau level (i.e., filling factor 5/2). Using numerical exact diagonalization we investigate the important question of whether this system supports a FQHE described by the non-Abelian Moore-Read Pfaffian state in the strong-tunneling regime. In the lowest Landau level, we find that although, in principle, increasing (decreasing) tunneling strength (layer separation) could lead to a transition from the Abelian two-component Halperin 331 to non-Abelian one-component Moore-Read Pfaffian state, the FQHE excitation gap is relatively small in the lowest Landau level Pfaffian regime, and we establish that all so far observed FQHE states in half-filled lowest Landau level bilayers are most likely described by the Abelian Halperin 331 state. In the second Landau level we make the prediction that bilayer structures would manifest two distinct branches of incompressible FQHE corresponding to the Abelian 331 state (at moderate to low tunneling and large layer separation) and the non-Abelian Moore-Read Pfaffian state (at large tunneling and small layer separation). The observation of these two FQHE branches and the possible quantum phase transition between them will be compelling evidence supporting the existence of the non-Abelian Moore-Read Pfaffian state in the second Landau level. We discuss our results in the context of existing experiments and theoretical works.
机译:我们研究了半填充双层结构中最低的两个朗道能级的分数量子霍尔效应(FQHE)的量子相图,它是隧穿强度和层分离的函数,即,我们重新审视了最低的朗道能级填充因子1 / 2双层问题,并做出涉及半填充的第二Landau层中的双层(即填充因子5/2)的预测。使用数值精确对角线化,我们研究了一个重要问题,即该系统是否支持在强隧道化系统中由非阿贝尔Moore-Read Pfaffian状态描述的FQHE。在最低的Landau水平上,我们发现尽管原则上增加(减小)隧道强度(层分离)可能会导致从Abelian两组分Halperin 331转变为非Abeleian一组分Moore-Read Pfaffian状态, FQHE激发间隙在最低的Landau级Pfaffian体制中相对较小,我们确定,迄今为止,在半填充的最低Landau级双层中观察到的所有FQHE状态最有可能由Abelian Halperin 331状态描述。在第二个Landau层中,我们预测双层结构将表现出不可压缩的FQHE的两个不同分支,分别对应于Abelian 331状态(中等至低隧穿和大层分离)和非Abelian Moore-Read Pfaffian状态(大范围)。隧道和小层分离)。观察这两个FQHE分支以及它们之间可能的量子相变将成为有力的证据,支持在Landau二级中存在非阿贝尔摩尔定律的Pfaffian态。我们在现有实验和理论著作的背景下讨论我们的结果。

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