Nonequilibrium plasmon liquid in a Josephson junction chain
arXiv:2504.09721 · doi:10.1126/sciadv.ady7222
Abstract
Equilibrium quantum systems are often described by a gas of weakly-interacting normal modes. Bringing such systems far from equilibrium, however, can drastically enhance mode-to-mode interactions. Understanding the resulting liquid is a fundamental question for quantum statistical mechanics, and a practical question for engineering driven quantum devices. To tackle this question, we probe the nonequilibrium kinetics of one-dimensional plasmons in a long chain of Josephson junctions. We introduce multimode spectroscopy to controllably study the departure from equilibrium, witnessing the evolution from pairwise coupling between plasma modes at weak driving to dramatic, high-order, cascaded couplings at strong driving. Scaling to many-mode drives, we stimulate interactions between hundreds of modes, resulting in near-continuum internal dynamics. Imaging the resulting nonequilibrium plasmon populations, we then resolve the non-local redistribution of energy in the response to a weak perturbation -- an explicit verification of the emergence of a strongly interacting, non-equilibrium liquid of plasmons.
12+21 pages, 5+11 figures
References in corpus (42)
- Cavity Optomechanics
- Quantum fluids of light
- Circuit Quantum Electrodynamics
- Topological energy transfer in an optomechanical system with exceptional points
- Fluxonium: single Cooper pair circuit free of charge offsets
- Amplification and squeezing of quantum noise with a tunable Josephson metamaterial
- One-Dimensional Quantum Liquids: Beyond the Luttinger Liquid Paradigm
- Quantum Phase Transitions and Vortex Dynamics in Superconducting Networks
- Phase preserving amplification near the quantum limit with a Josephson Ring Modulator
- First results from a microwave cavity axion search at 24 micro-eV
- Implementation of low-loss superinductances for quantum circuits
- Exponentially-enhanced quantum sensing with non-Hermitian lattice dynamics
- Quantum limited amplification and entanglement in coupled nonlinear resonators
- Hardware-efficient quantum random access memory with hybrid quantum acoustic systems
- Cavity quantum acoustic device in the multimode strong coupling regime
- Optical circulation in a multimode optomechanical resonator
- Controlling the dynamic range of a Josephson parametric amplifier
- Random access quantum information processors
- Quantum superposition of a single microwave photon in two different "colour" states
- Measuring the knot of non-Hermitian degeneracies and non-commuting braids
- Measurement of the effect of quantum phase-slips in a Josephson Junction chain
- Kerr coefficients of plasma resonances in Josephson junction chains
- Sign-changing photon-mediated atom interactions in multimode cavity QED
- Quantum electrodynamics of a superconductor-insulator phase transition
- Josephson Array Mode Parametric Amplifier
- Observation of quantum many-body effects due to zero point fluctuations in superconducting circuits
- Kerr non-linearity in a superconducting Josephson metamaterial
- Pattern formation by turbulent cascades
- Thermalization of acoustic excitations in a strongly interacting one-dimensional quantum liquid
- Bistability in a Mesoscopic Josephson Junction Array Resonator
- Quantum Phase Slips in one-dimensional Josephson Junction Chains
- Towards highly efficient broadband superconducting quantum memory
- Down-conversion of a single photon as a probe of many-body localization
- Quantum versus classical switching dynamics of driven-dissipative Kerr resonators
- Microwave spectroscopy of a weakly-pinned charge density wave in a superinductor
- Multipartite entanglement in a microwave frequency comb
- Superconductivity from a melted insulator
- Decay of plasmonic waves in Josephson junction chains
- Josephson Ladders as a Model System for 1D Quantum Phase Transitions
- Direct detection of down-converted photons spontaneously produced at a single Josephson junction
- Apparent nonlinear damping triggered by quantum fluctuations
- A superconducting circuit realization of combinatorial gauge symmetry