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Half-filled Landau level, topological insulator surfaces, and three-dimensional quantum spin liquids

机译:半填充的朗道能级,拓扑绝缘体表面和三维量子自旋液体

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We synthesize and partly review recent developments relating the physics of the half-filled Landau level in two dimensions to correlated surface states of topological insulators in three dimensions. The latter are in turn related to the physics of certain three-dimensional quantum spin liquid states. The resulting insights provide an interesting answer to the old question of how particle-hole symmetry is realized in composite fermion liquids. Specifically the metallic state at filling v =1/2-described originally in pioneering work by Halperin, Lee, and Read as a liquid of composite fermions-was proposed recently by Son to be described by a particle-hole symmetric effective field theory distinct from that in the prior literature. We show how the relation to topological insulator surface states leads to a physical understanding of the correctness of this proposal. We develop a simple picture of the particle-hole symmetric composite fermion through a modification of older pictures as electrically neutral "dipolar" particles. We revisit the phenomenology of composite fermi liquids (with or without particle-hole symmetry), and show that their heat/electrical transport dramatically violates the conventional Wiedemann-Franz law but satisfies a modified one. We also discuss the implications of these insights for finding physical realizations of correlated topological insulator surfaces.
机译:我们综合并部分回顾了二维二维半填充朗道能级的物理学与三维三维拓扑绝缘子的相关表面状态相关的最新进展。后者又与某些三维量子自旋液态的物理学有关。由此产生的见解为解决复合费米子液体中如何实现颗粒-孔对称性这一老问题提供了有趣的答案。特别地,Halperin,Lee和Read作为复合费米子的液体在开创性工作中最初描述的填充v = 1/2时的金属态最近由Son提出,用不同于粒子直径对称的有效场理论描述。在先前的文献中。我们展示了与拓扑绝缘子表面状态的关系如何导致对该提案正确性的物理理解。我们通过将较旧的图片修改为电中性“偶极”粒子来开发粒子-孔对称复合费米子的简单图片。我们回顾了复合费米液体的现象学(具有或不具有颗粒-孔对称性),并显示它们的热/电传输显着违反了常规的维德曼-弗朗兹定律,但满足了修改后的定律。我们还将讨论这些见解对寻找相关拓扑绝缘体表面的物理实现的含义。

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  • 来源
    《Physical Review. B, Condensed Matter 》 |2016年第8期| 085110.1-085110.19| 共19页
  • 作者

    Chong Wang; T. Senthil;

  • 作者单位

    Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA;

    Department of Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA;

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  • 正文语种 eng
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