A dissipation gradient plus detuning ramp selects a resonant pinned density front in 2D driven-dissipative Bose-Hubbard lattice simulations, producing tunable depinning, pattern locking, and chaos.
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8 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 8representative citing papers
Experimental observation of ghost states from saddle-node bifurcations in an optical cavity, with lifetimes exceeding the photon lifetime by over ten orders of magnitude via nonlinear response with memory.
Two-photon coincidence statistics in terahertz light from a cavity-embedded 2H-NbSe2 superconductor provide a diagnostic for ultrastrong Higgs-polariton coupling that is missing in total photon counts.
Variational perturbation theory extends the radius of convergence for steady-state calculations in open quantum systems and replaces pseudo-inverse computations with LU decomposition or Krylov recycling.
Acoustic waves induce resonant spin dynamics, nonlinear line shapes, amplitude hysteresis, and state switching in spinor polariton condensates via strain-induced effective magnetic fields.
Open photon condensates form metastable plateaus with thermal-like fluctuations and undergo multiple non-Hermitian phase transitions via ghost attractors and exceptional points.
Demonstrates gapless Goldstone modes and the key stabilizing role of reservoir-mediated attractive interactions in nonequilibrium polariton supersolids.
Mass imbalance and Coulomb strength control a BCS-BEC crossover in polaritonic condensates, with semiconductors favoring BEC-like excitonic states at low density and semimetals favoring BCS pairing except at strong interactions and large imbalance.
citing papers explorer
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Dissipation-Selected Resonant Fronts in a Driven-Dissipative Bose-Hubbard Lattice
A dissipation gradient plus detuning ramp selects a resonant pinned density front in 2D driven-dissipative Bose-Hubbard lattice simulations, producing tunable depinning, pattern locking, and chaos.
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Ghost State of Light
Experimental observation of ghost states from saddle-node bifurcations in an optical cavity, with lifetimes exceeding the photon lifetime by over ten orders of magnitude via nonlinear response with memory.
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Ultrastrong Coupling Signatures in Photon Statistics from Terahertz Higgs-Polaritons
Two-photon coincidence statistics in terahertz light from a cavity-embedded 2H-NbSe2 superconductor provide a diagnostic for ultrastrong Higgs-polariton coupling that is missing in total photon counts.
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Variational Perturbation Theory in Open Quantum Systems for Efficient Steady State Computation
Variational perturbation theory extends the radius of convergence for steady-state calculations in open quantum systems and replaces pseudo-inverse computations with LU decomposition or Krylov recycling.
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Acoustic spin resonance in polariton condensates
Acoustic waves induce resonant spin dynamics, nonlinear line shapes, amplitude hysteresis, and state switching in spinor polariton condensates via strain-induced effective magnetic fields.
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Emergent thermal fluctuations and non-Hermitian phase transitions in open photon condensates
Open photon condensates form metastable plateaus with thermal-like fluctuations and undergo multiple non-Hermitian phase transitions via ghost attractors and exceptional points.
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Collective Excitations and Stability of Nonequilibrium Polariton Supersolids
Demonstrates gapless Goldstone modes and the key stabilizing role of reservoir-mediated attractive interactions in nonequilibrium polariton supersolids.
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BCS-BEC crossover of polaritonic condensates in mass-imbalanced semimetal/semiconductor microcavities
Mass imbalance and Coulomb strength control a BCS-BEC crossover in polaritonic condensates, with semiconductors favoring BEC-like excitonic states at low density and semimetals favoring BCS pairing except at strong interactions and large imbalance.