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Quantum Synchronization of Fock States

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abstract

Synchronization, a ubiquitous phenomenon in classical systems, has recently been extended to the quantum domain. Here, we show quantum synchronization of a bosonic mode exhibiting a Fock state-like limit cycle, manifesting as a steady state with a negative Wigner function. We demonstrate that this non-classical state can be phase-locked to an external drive, achieving synchronization within an Arnold tongue regime. We argue that synchronization is a dynamical property and fundamentally tied to the suppression of phase slips, which we show to occur with exponentially decreasing probability. We introduce a novel method to extract the phase slip rate from the Lindblad time evolution of the system. This work opens new avenues for understanding and manipulating non-classical synchronization dynamics.

fields

quant-ph 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

Synchronization in the quantum regime

quant-ph · 2026-06-19 · unverdicted · novelty 2.0

The paper reviews advances in quantum synchronization, covering characterization of synchronous oscillations, nonclassical forms of synchrony, and many-body synchronization on quantum networks.

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  • Synchronization in the quantum regime quant-ph · 2026-06-19 · unverdicted · none · ref 56 · internal anchor

    The paper reviews advances in quantum synchronization, covering characterization of synchronous oscillations, nonclassical forms of synchrony, and many-body synchronization on quantum networks.