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Notes on the Squashed Sphere Lowest Landau Level

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arxiv 1909.08042 v1 pith:QCIQHXQ6 submitted 2019-09-17 hep-th astro-ph.HEcond-mat.quant-gas

classification hep-thastro-ph.HEcond-mat.quant-gas
keywords spherequantumparticlesquashedarticledynamicseffecthaldane
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In a recent article, we were motivated by the question of whether any of the remarkable condensed matter phenomena, such as the quantum Hall effect (QHE), the Integer quantum Hall effect (IQHE) etc., could potentially be observed in the extreme astrophysical environments of neutron stars. As a prequel to that work, and with the aim of understanding better the role of the geometry of the conducting surface on the structure of Landau levels, in this article we study the quantum dynamics of a quantum particle on a squashed sphere. More specifically, we study the dynamics of a single particle on an oblate squashed Haldane sphere i.e. a 2-sphere enclosing a single magnetic monopole at its center. While several features of the conventional Haldane sphere persist, by numerically solving the Schrodinger equation in this background, we find that the particle becomes increasingly localised in a band between the equator and the poles, with a corresponding increase of the eccentricity of the spheroid.

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  1. Anyon dispersion from non-uniform magnetic field on the sphere

    cond-mat.str-el 2025-06 conditional novelty 7.0 of 10

    For a specifically chosen non-uniform magnetic field on the sphere, Laughlin quasiholes acquire an analytically computed, interaction-generated energy dispersion whose functional form is exact up to a fitted overall scale.

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