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Observation of a Nematic Quantum Hall Liquid on the Surface of Bismuth

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arxiv 1610.07613 v1 pith:ADJYFT2M submitted 2016-10-24 cond-mat.mes-hall

Observation of a Nematic Quantum Hall Liquid on the Surface of Bismuth

classification cond-mat.mes-hall
keywords quantumhallnematicwavefunctionsanisotropicelectronicformhole
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Nematic quantum fluids with wavefunctions that break the underlying crystalline symmetry can form in interacting electronic systems. We examine the quantum Hall states that arise in high magnetic fields from anisotropic hole pockets on the Bi(111) surface. Spectroscopy performed with a scanning tunneling microscope shows that a combination of local strain and many-body Coulomb interactions lift the six-fold Landau level (LL) degeneracy to form three valley-polarized quantum Hall states. We image the resulting anisotropic LL wavefunctions and show that they have a different orientation for each broken-symmetry state. The wavefunctions correspond precisely to those expected from pairs of hole valleys and provide a direct spatial signature of a nematic electronic phase.

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