arXiv · 2002.07488
Noise, not squeezing, boosts synchronization in the deep quantum regime
Abstract
Synchronization occurs ubiquitously in nature. The van der Pol oscillator has been a favorite model to investigate synchronization. Here we study the oscillator in the deep quantum regime, where nonclassical effects dominate the dynamics. Our results show: (i) squeezed driving loses its effect, (ii) noise boosts synchronization, (iii) synchronization is bounded, and (iv) the limit-cycle is insensitive to strong driving. We propose a synchronization measure and analytically calculate it. These results reflect intrinsic differences between synchronization in the quantum and deep quantum regimes.
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Wai Keong Mok, Leong Chuan Kwek, Hermanni Heimonen. 2020-02-18. Noise, not squeezing, boosts synchronization in the deep quantum regime. https://doi.org/10.1103/physrevresearch.2.033422
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