Anomalous Non-Superconducting Time-Reversal-Symmetry Breaking State in Multicomponent Superconductors
ORAL
Abstract
Multicomponent superconductors can break time-reversal symmetry, either due to phase frustration in Josephson-coupled superconductors with at least three components, or due to higher-order Josephson coupling in superconductors with at least two components. Beyond mean-field theory, such systems may have an anomalous phase in which time-reversal symmetry is broken despite superconducting order being absent. Models of the aforementioned type have been argued to describe the multiband superconductor Ba1-xKxFe2As2. We report properties of the fluctuation-induced precursory normal state that breaks time-reversal symmetry.
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Presenters
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Daniel Weston
KTH Royal Institute of Technology
Authors
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Daniel Weston
KTH Royal Institute of Technology
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Egor Babaev
KTH Royal Institute of Technology, KTH the Royal Institute of Technology, Theoretical Physics, Royal Institute of Technology, Royal Institute of Technology