Cavity driving induces coherent magnetization and polariton signatures in d-wave altermagnets via selective sublattice coupling in a mean-field Lindblad model.
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Cavity QED stabilizes thermally disordered quantum Hall stripes in a 2DEG, producing anisotropic transport with longitudinal resistance suppressed below zero-field values at ultra-low temperatures.
Vacuum fluctuations of magnetic flux in an LC resonator mediate electron pairing in 2D systems to form a pair-density wave topological chiral superconductor with Tc of several Kelvin or higher.
A review that organizes the field of cavity quantum materials around a fluctuation-focused perspective, surveying design tools, recent milestones, and challenges for controlling quantum orders in various platforms.
citing papers explorer
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Cavity-induced coherent magnetization and polaritons in altermagnets
Cavity driving induces coherent magnetization and polariton signatures in d-wave altermagnets via selective sublattice coupling in a mean-field Lindblad model.
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Cavity QED Control of Quantum Hall Stripes
Cavity QED stabilizes thermally disordered quantum Hall stripes in a 2DEG, producing anisotropic transport with longitudinal resistance suppressed below zero-field values at ultra-low temperatures.
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Chiral electron-fluxon superconductivity in circuit quantum magnetostatics
Vacuum fluctuations of magnetic flux in an LC resonator mediate electron pairing in 2D systems to form a pair-density wave topological chiral superconductor with Tc of several Kelvin or higher.
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Fluctuation engineering in cavity quantum materials
A review that organizes the field of cavity quantum materials around a fluctuation-focused perspective, surveying design tools, recent milestones, and challenges for controlling quantum orders in various platforms.