论文标题
重力诱导的分解性与时空扩散:测试重力的量子性质
Gravitationally induced decoherence vs space-time diffusion: testing the quantum nature of gravity
论文作者
论文摘要
当一个经典处理一个,而另一个系统仍然保持量子时,我们会考虑两个相互作用的系统。这种耦合的一致动力学已被证明存在,并在经典处理时空的背景下进行了探索。在这里,我们证明这种杂交动力学必然导致量子系统的破坏,并且经典相空间中可预测性的分解。我们进一步证明,这种解相关的速率与经典系统中引起的扩散程度之间的权衡是所有经典量子动力学的一般特征。相对于耦合的强度,长时间的相干时间需要在相位方面进行强扩散。通过将权衡关系与重力相关,我们发现重力诱导的退积的强度与度量标准的扩散及其共轭动量之间的关系。这提供了从根本上是经典的理论的实验签名。当前干涉测量实验产生的分解速率的界限,结合质量的精确测量,对爱因斯坦的经典重力理论与量子问题相互作用的理论施加了显着限制。我们发现,此类理论的参数空间的一部分已经被挤出,并提供了功绩数字,可用于将来的质量测量和干扰实验。
We consider two interacting systems when one is treated classically while the other system remains quantum. Consistent dynamics of this coupling has been shown to exist, and explored in the context of treating space-time classically. Here, we prove that such hybrid dynamics necessarily results in decoherence of the quantum system, and a breakdown in predictability in the classical phase space. We further prove that a trade-off between the rate of this decoherence and the degree of diffusion induced in the classical system is a general feature of all classical quantum dynamics; long coherence times require strong diffusion in phase-space relative to the strength of the coupling. Applying the trade-off relation to gravity, we find a relationship between the strength of gravitationally-induced decoherence versus diffusion of the metric and its conjugate momenta. This provides an experimental signature of theories in which gravity is fundamentally classical. Bounds on decoherence rates arising from current interferometry experiments, combined with precision measurements of mass, place significant restrictions on theories where Einstein's classical theory of gravity interacts with quantum matter. We find that part of the parameter space of such theories are already squeezed out, and provide figures of merit which can be used in future mass measurements and interference experiments.