Disorder in a fermionic cavity changes superradiance from a single bright mode with photon number nb ∝ N to an extensive grey-mode condensate with nb ∝ N².
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
years
2026 3representative citing papers
A general quantity from Landau free energy shows superradiant transitions can enhance or suppress fermionic pairing and superconducting gaps in two-order-parameter systems, as verified in Rabi and Dicke models.
Classifies two-order-parameter systems into categories based on free-energy coupling terms, each yielding different phase diagrams and critical scalings.
citing papers explorer
-
Disorder-Induced Enhancement of Fermionic Superradiance
Disorder in a fermionic cavity changes superradiance from a single bright mode with photon number nb ∝ N to an extensive grey-mode condensate with nb ∝ N².
-
Superradiance enhances and suppresses fermionic pairing based on universal critical scaling in two order parameters systems
A general quantity from Landau free energy shows superradiant transitions can enhance or suppress fermionic pairing and superconducting gaps in two-order-parameter systems, as verified in Rabi and Dicke models.
-
Universal classification of continuous phase transitions with two order parameters
Classifies two-order-parameter systems into categories based on free-energy coupling terms, each yielding different phase diagrams and critical scalings.