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Coherent Two-State Oscillations in False Vacuum Decay Regimes

Quantum Physics 2026-01-21 v2 Atomic Physics

Abstract

Coherent two-state oscillations are observed in numerical simulations of the one-dimensional transverse-longitudinal-field Ising model (TLFIM) within false vacuum decay regimes. Starting from the false vacuum (a nearly fully polarized ferromagnetic state), we show that in moderate-sized systems, at resonances h2J/nh\approx 2J/n (with longitudinal field hh, transverse field JJ, and an integer nn), the expected decay can give way to coherent oscillations between the false vacuum and a symmetric resonant state. The oscillation frequency, i.e., the tunneling splitting, is observed notably to exhibit a superradiant-like L\sqrt{L} enhancement, as confirmed by a Schrieffer-Wolff analysis. In large chains, coherence remains for nL/2n\gtrsim L/2 due to bubble-size blockade and is robust against stronger transverse fields; for small nn, long-range interactions can stabilize the oscillations by lifting multi-bubble degeneracies, establishing a robust many-body coherence mechanism beyond perturbative and finite-size limits.

Keywords

Cite

@article{arxiv.2509.04272,
  title  = {Coherent Two-State Oscillations in False Vacuum Decay Regimes},
  author = {Peiyun Ge and Xiao Wang and Yu-Xin Chao and Rong Lu and Li You},
  journal= {arXiv preprint arXiv:2509.04272},
  year   = {2026}
}
R2 v1 2026-07-01T05:21:15.520Z