Romanelli M, Wang L, Brunel M, Vallet M
Opt Express. 2014 Apr 7;22(7):7364-73. doi: 10.1364/OE.22.007364.
When a driven oscillator loses phase-locking to a master oscillator via a Hopf bifurcation, it enters a bounded-phase regime in which its average frequency is still equal to the master frequency, but its phase displays temporal oscillations. Here we characterize these two synchronization regimes in a laser experiment, by measuring the spectrum of the phase fluctuations across the bifurcation. We find experimentally, and confirm numerically, that the low frequency phase noise of the driven oscillator is strongly suppressed in both regimes in the same way. Thus the long-term phase stability of the master oscillator is transferred to the driven one, even in the absence of phase-locking. The numerical study of a generic, minimal model suggests that such behavior is universal for any periodically driven oscillator near a Hopf bifurcation point.
当一个受驱振荡器通过霍普夫分岔失去与主振荡器的锁相时,它进入一个有界相位状态,在该状态下其平均频率仍等于主频率,但其相位表现出时间振荡。在这里,我们通过测量分岔过程中的相位涨落频谱,在一个激光实验中对这两种同步状态进行了表征。我们通过实验发现,并通过数值计算证实,在这两种状态下,受驱振荡器的低频相位噪声都以相同的方式被强烈抑制。因此,即使在没有锁相的情况下,主振荡器的长期相位稳定性也会传递给受驱振荡器。对一个通用的最小模型的数值研究表明,这种行为对于任何靠近霍普夫分岔点的周期性受驱振荡器来说都是普遍存在的。