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◆ Reports on Progress in Physics2026-02-26· Physics

Steady-states and response functions of the periodically driven O( <i>N</i> ) scalar field theory

Oriana K Diessel, Subir Sachdev, Pietro M. Bonetti

原始摘要(英文原文)· Original abstract
Abstract We investigate the phase diagram of a relativistic, parametrically driven O( N )-symmetric theory coupled to a Markovian thermal bath. Our analysis reveals a rich variety of phases, including both uniform and spatially modulated symmetry-broken states, some of which feature an order parameter oscillating at half the drive frequency. When coupled to a background electromagnetic potential, these phases exhibit a Meissner effect, in the sense that the photon acquires a mass term. However, if the order parameter oscillates around a sufficiently small value, a fraction of an externally applied magnetic field can penetrate the sample in the form of a standing wave. We dub this property a Meissner polariton , that is, a collective mode resulting from the hybridization of light with order parameter oscillations. Furthermore, near the onset of symmetry breaking, strong fluctuations give rise to a superconducting-like response even in the absence of a Meissner effect or of a Meissner polariton. Our results are relevant to experiments on light-induced orders, particularly superconductivity.
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Steady-states and response functions of the periodically driven O( <i>N</i> ) scalar field theory — 科研速览 Science Skim