Highly-anisotropic even-denominator fractional quantum Hall state in an orbitally-coupled half-filled Landau level
ORAL
Abstract
The even-denominator fractional quantum Hall states (FQHSs) in half-filled Landau levels are generally believed to host non-Abelian quasiparticles and be of potential use in topological quantum computing. Of particular interest is the competition and interplay between the even-denominator FQHSs and other ground states, such as anisotropic phases and composite fermion Fermi seas. Here we report the observation of an even-denominator FQHS with highly-anisotropic in-plane transport coefficients at Landau level filling factor ν = 3/2. We observe this state in an ultra-high-quality GaAs two-dimensional hole system when a large in-plane magnetic field is applied. By increasing the in-plane field, we observe a sharp transition from an isotropic composite fermion Fermi sea to an anisotropic even-denominator FQHS. Our data and calculations suggest that a unique feature of two-dimensional holes, namely the coupling between heavy-hole and light-hole states, combines different orbital components in the wavefunction of one Landau level, and leads to the emergence of a highly-anisotropic even-denominator FQHS. Our results demonstrate that the GaAs two-dimensional hole system is a unique platform for the exploration of exotic, many-body ground states.
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Publication: Chengyu Wang, A. Gupta, Y. J. Chung, L. N. Pfeiffer, K. W. West, K. W. Baldwin, R. Winkler, M. Shayegan, Highly-Anisotropic Even-Denominator Fractional Quantum Hall State in an Orbitally-Coupled Half-Filled Landau Level, Phys. Rev. Lett. 131, 056302 (2023).
Presenters
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Mansour Shayegan
Princeton University
Authors
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Chengyu Wang
Princeton University
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Mansour Shayegan
Princeton University
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Adbhut Gupta
Princeton University
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Edwin Y Chung
Princeton University
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Loren N Pfeiffer
Princeton University
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Kirk Baldwin
Princeton University
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Roland Winkler
Northern Illinois University