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We investigate the near-critical dynamics of atomic density fluctuations in the nonequilibrium self-organization transition of an optically driven quantum gas coupled to a single mode of a cavity. In this system cavity-mediated long-range interactions between atoms, tunable by the drive strength, lead to softening of an excitation mode recently observed in experiments. This phenomenon has previously been studied within a two-mode approximation for the collective motional degrees of freedom of the atomic condensate, which results in an effective open-system Dicke model. Here, including the full spectrum of atomic modes we find a finite lifetime for a rotonlike mode in the Bogoliubov excitation spectrum that is strongly pump dependent. The corresponding decay rate and critical exponents for the phase transition are calculated explaining the nonmonotonic pump-dependent atomic damping rate observed in recent experiments. We compute the near-critical behavior of the intracavity field fluctuations that has been previously shown to be enhanced with respect to the equilibrium Dicke model in a two-mode approximation. We highlight the role of the finite size of the system in the suppression of it below the expectations of the open Dicke model.
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http://dx.doi.org/10.1103/PhysRevLett.111.220408 | DOI Listing |
NJAS Impact Agric Life Sci
May 2025
Business Economics, Wageningen University & Research, Wageningen, The Netherlands.
Circularity in agriculture regarding the recycling of by-products from one form of production for use as inputs in another has become an urgent initiative as resources become more scarce and valuable. One potential example of circular agriculture is recycling the by-products of insect production (frass) as a crop and soil health promoter. This research investigates the drivers of arable farmers' intentions to trial insect frass as an input on their farms using the Theory of Planned Behaviour and the Innovation Decision Process.
View Article and Find Full Text PDFJ Phys Condens Matter
August 2025
Shiyan Key Laboratory of Electromagnetic Induction and Energy Saving Technology and Shiyan Key Laboratory of Quantum Information and Precision Optics, Hubei Key Laboratory of Energy Storage and Power Battery and Hubei Key Laboratory of Automotive Power Train and Electronic Control, Hubei University
We study the anomalous Dicke model from two different perspectives including the quantum theory and semiclassical approximation method. Due to the competition between both bidirectional couplings in this appealing model, it exhibits three distinct phases, i.e.
View Article and Find Full Text PDFNanophotonics
June 2025
Instituto de Nanociencia y Materiales de Aragón (INMA), CSIC-Universidad de Zaragoza, Zaragoza 50009, Spain.
We present a study of hybrid light-matter excitations in cavity QED materials using the Dicke-Ising model as a theoretical framework. Leveraging linear response theory, we derive the exact excitations of the system in the thermodynamic limit. Our results demonstrate that the cavity can localize spin excitations, leading to the formation of bound polaritons, where the cavity acts as an impurity of the two-excitation band, localizing spin-wave pairs around single-spin domains.
View Article and Find Full Text PDFStress Health
June 2025
Department of Psychology, University of Jyväskylä, Jyväskylä, Finland.
Emotion regulation has recently been suggested to predict parental burnout, a prevalent syndrome in parenting. However, a substantial theory-method gap exists, as most studies have relied on cross-sectional data and between-person analyses. In this study, we aimed to illuminate the longitudinal associations between two powerful cognitive emotion regulation strategies-cognitive reappraisal and rumination-and parental burnout from both between- and within-person perspectives.
View Article and Find Full Text PDFPhys Rev Lett
May 2025
Leiden University, Institute Lorentz, PO Box 9506, Leiden 2300 RA, The Netherlands.
The cosmic microwave background (CMB) and baryon acoustic oscillations (BAO) are two of the most robust observations in cosmology. The recent BAO measurements from the DESI collaboration have presented, for the first time, inconsistency between BAO and CMB within the standard cosmological model ΛCDM, indicating a preference for dynamical dark energy over a cosmological constant. We analyze the theoretical implication of the DESI BAO observation for dark energy and gravity employing a nonparametric reconstruction approach for both the dark energy equation of state w_{DE}(a) and the effective field theory coefficients.
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