Chia A, Kwek L C, Noh C
Centre for Quantum Technologies, National University of Singapore, Singapore.
National Institute of Education, Nanyang Technological University, Singapore.
Phys Rev E. 2020 Oct;102(4-1):042213. doi: 10.1103/PhysRevE.102.042213.
Frequency entrainment of continuous-variable oscillators has to date been restrained to the weakly nonlinear regime. Here we overcome this bottleneck and extend frequency entrainment of quantum continuous-variable oscillators to arbitrary nonlinearities. The previously known steady state of such quantum oscillators in the weakly nonlinear regime (also known as a Stuart-Landau oscillator) is shown to emerge as a special case. Most importantly, the hallmark of strong nonlinearity-relaxation oscillations-is shown in quantum mechanics. Depending on the oscillator's nonlinearity, relaxation oscillations are found to occur via two distinct mechanisms in phase space.
迄今为止,连续变量振荡器的频率同步一直局限于弱非线性 regime。在这里,我们克服了这一瓶颈,将量子连续变量振荡器的频率同步扩展到任意非线性情况。结果表明,此前已知的这种量子振荡器在弱非线性 regime(也称为斯图尔特 - 朗道振荡器)下的稳态是一种特殊情况。最重要的是,强非线性的标志——弛豫振荡——在量子力学中得到了体现。根据振荡器的非线性情况,发现弛豫振荡在相空间中通过两种不同的机制发生。