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Electronic Excitations in the Bulk of Fractional Quantum Hall States

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arxiv 2406.09382 v2 pith:2KBE26QK submitted 2024-06-13 cond-mat.mes-hall cond-mat.str-el

Electronic Excitations in the Bulk of Fractional Quantum Hall States

classification cond-mat.mes-hall cond-mat.str-el
keywords electronicstateselectronexcitationsfunctionfieldfractionalhall
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We analyze electronic excitations (excitations generated by adding or removing one electron) in the bulk of fractional quantum Hall states in Jain sequence states, using composite fermion Chern-Simons field theory. Starting from meanfield approximation in which gauge field fluctuations are neglected, we use symmetry to constrain the possible composite fermion states contributing to electronic Green's function and expect discrete infinitely-sharp peaks in the electronic spectral function. We further consider the electronic excitations in particle-hole conjugate fractional quantum hall states. Gauge field fluctuations play an increasingly important role in the electron spectral function as the filling factor approaches 1/2, and evolve the discrete coherent peaks into a broad continuum even in the absence of impurities. At that limit, we switch to the electron perspective and calculate the electron spectral function via linked cluster approximation from the low to intermediate energy range. Finally, we compare our results with recent experiments.

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  1. Lattice composite Fermi liquid with broken inversion symmetry

    cond-mat.str-el 2026-07 accept novelty 7.0

    Inversion-asymmetric lattice composite Fermi liquids show singular optical resistivity ∼|ω|^{4/3}, nonreciprocal finite-q Hall response, and enhanced Umklapp DC resistivity absent in continuum CFLs.