Cavity resonance at 2.04 THz raises superconducting Tc of trilayer NbSe2 from 3.02 K to 3.41 K with spatial and frequency dependence matching the cavity field profile.
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No spectroscopic signature of a superradiant phase transition appears in ultrastrongly coupled Dirac Landau polaritons; spectra are reproduced by a conventional Hopfield Hamiltonian.
Cavity engineering increases superfluid weight and shifts the superconducting onset temperature upward in an underdoped YBCO thin film, interpreted via a phase-fluctuating superconductor model.
citing papers explorer
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Cavity Enhanced Superconductivity
Cavity resonance at 2.04 THz raises superconducting Tc of trilayer NbSe2 from 3.02 K to 3.41 K with spatial and frequency dependence matching the cavity field profile.
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Cavity-enhanced superconducting response in an underdoped cuprate
Cavity engineering increases superfluid weight and shifts the superconducting onset temperature upward in an underdoped YBCO thin film, interpreted via a phase-fluctuating superconductor model.