论文标题

量子纯噪声引起的过渡:对数量平等敏感的真正非经典极限周期

Quantum pure noise-induced transitions: A truly nonclassical limit cycle sensitive to number parity

论文作者

Chia, A., Mok, W. -K., Noh, C., Kwek, L. C.

论文摘要

普遍认为,噪声可能会给复杂的非平衡系统带来秩序。最引人注目的是,在无噪声系统中未见的全新状态可以纯粹通过包括乘法噪声(这种效果称为纯噪声引起的过渡)来诱导。它在1980年代首次在超级流体中观察到。复杂的非平衡系统的最新结果还显示了新的集体状态如何从这种纯噪声引起的过渡中出现,例如昆虫菌落的觅食行为和鱼类的教育。在这里,我们报告了量子机械系统中噪声的这种影响,而没有经典的限制。我们在可波动的环境中使用了非线性阻尼振荡器的最小模型,该模型在分析上可进行,并且可以理解其显微镜物理学。当包括乘法环境噪声时,可以看到系统过渡到极限周期状态。噪声引起的量子限制周期还表现出​​其他真正的非古典性状,例如相位空间中的Wigner负性和数字敏感循环。这种量子极限周期也是保守的。这些特性与文献中广泛使用的极限周期的特性形成了鲜明的对比,后者是耗散性的,并且失去了所有wigner否定性。我们的结果确定了纯噪声引起的过渡的存在,该过渡是非经典且对开放量子系统独有的。它们说明了量子和经典噪声之间的基本差异。

It is universally accepted that noise may bring order to complex nonequilibrium systems. Most strikingly, entirely new states not seen in the noiseless system can be induced purely by including multiplicative noise -- an effect known as pure noise-induced transitions. It was first observed in superfluids in the 1980s. Recent results in complex nonequilibrium systems have also shown how new collective states emerge from such pure noise-induced transitions, such as the foraging behavior of insect colonies, and schooling in fish. Here we report such effects of noise in a quantum-mechanical system without a classical limit. We use a minimal model of a nonlinearly damped oscillator in a fluctuating environment that is analytically tractable, and whose microscopic physics can be understood. When multiplicative environmental noise is included, the system is seen to transition to a limit-cycle state. The noise-induced quantum limit cycle also exhibits other genuinely nonclassical traits, such as Wigner negativity and number-parity sensitive circulation in phase space. Such quantum limit cycles are also conservative. These properties are in stark contrast to those of a widely used limit cycle in the literature, which is dissipative and loses all Wigner negativity. Our results establish the existence of a pure noise-induced transition that is nonclassical and unique to open quantum systems. They illustrate a fundamental difference between quantum and classical noise.

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