The reverse quantum limit and its implications for unconventional quantum oscillations in YbB12
Christopher A. Mizzi,
Satya K. Kushwaha,
Priscila F. S. Rosa
et al.
Abstract:The quantum limit in a Fermi liquid, realized when a single Landau level is occupied in strong magnetic fields, gives rise to unconventional states, including the fractional quantum Hall effect and excitonic insulators. Stronger interactions in metals with nearly localized f-electron degrees of freedom increase the likelihood of these unconventional states. However, access to the quantum limit is typically impeded by the tendency of f-electrons to polarize in a strong magnetic field, consequently weakening the… Show more
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