High Magnetic Field Behavior of Novel Phases in YbB<sub>12</sub>
ORAL
Abstract
Large magnetic fields have dramatic effects on electron motion. In (semi)metallic systems, these effects are particularly pronounced because electron states are quantized into Landau levels causing oscillatory behavior in physical observables, known as quantum oscillations (QOs). QOs are important probes of electronic structure, but historically have been limited to (semi)metallic systems. As such, QOs in the magnetization and resistivity of YbB12 are surprising because YbB12 is nominally an insulator with small hybridization gaps at low temperatures. These observations in YbB12, and similar systems, are exciting owing to implications for topologically-protected surface states or a bulk neutral Fermi surface, but their origin is still not understood. In addition to these unconventional QOs, YbB12 hosts a strongly-correlated metallic state accessible by high fields. The possibility of a connection between the insulating ground state and field-induced metallic state remains unclear.
Using a combination of conventional transport, contactless transport, and magnetometry in pulsed magnets, we study the angular and temperature dependence of quantum oscillations in both the insulating and metallic states of YbB12. Our results demonstrate that quantum oscillations in YbB12 are robust and reproducible. Additionally, we examine the angular and temperature dependence of the insulator-metal transition. Together, these measurements help clarify the high field behavior of novel phases in YbB12.
Using a combination of conventional transport, contactless transport, and magnetometry in pulsed magnets, we study the angular and temperature dependence of quantum oscillations in both the insulating and metallic states of YbB12. Our results demonstrate that quantum oscillations in YbB12 are robust and reproducible. Additionally, we examine the angular and temperature dependence of the insulator-metal transition. Together, these measurements help clarify the high field behavior of novel phases in YbB12.
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Presenters
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Christopher A Mizzi
Los Alamos National Laboratory
Authors
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Christopher A Mizzi
Los Alamos National Laboratory
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Mun K Chan
Los Alamos National Laboratory, National Science Foundation, Alexandria, University of Minnesota
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William A Phelan
Los Alamos National Laboratory, Johns Hopkins University
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Lucas A Pressley
Johns Hopkins University, Oak Ridge National Lab
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Tyrel M McQueen
Johns Hopkins University, Cornell University, Department of Chemistry, Johns Hopkins University
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Priscila Rosa
Los Alamos National Laboratory
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Neil Harrison
Los Alamos Natl Lab, Los Alamos National Laboratory