论文标题

光子封锁崩溃的关键理论

Critical Theory for the Breakdown of Photon Blockade

论文作者

Curtis, Jonathan B., Boettcher, Igor, Young, Jeremy T., Maghrebi, Mohammad F., Carmichael, Howard, Gorshkov, Alexey V., Foss-Feig, Michael

论文摘要

光子封锁是光和强光学非线性量化性质之间相互作用的结果,因此强烈的光子 - 光子排斥阻止了量子光学系统吸收多个光子。从理论上讲,我们研究了一个与光场结合的单个原子,由驱动的Jaynes模型描述,在这种情况下,光子阻滞在临界驱动强度下以二阶相变为二阶相变。我们表明,这种转变与反对自动PT对称的自发断裂有关。在半经典近似中,我们计算稳态下可观测值的预期值。然后,我们超越了半经典近似,并通过将lindblad量子主方程减少到我们求解的经典速率方程来接近无序(封锁)阶段的临界点。当我们使用简单的幂律接近临界点时,发现了Fock空间中稳态分布的宽度有所不同,从而使我们能够计算稳态可观测值的临界缩放,而无需调用均值场理论。我们提出了一个简单的物理玩具模型,用于在职业数字空间中偏置扩散,该模型捕获了稳态的通用性能。我们列出了几个可以观察到这种现象的实验平台。

Photon blockade is the result of the interplay between the quantized nature of light and strong optical nonlinearities, whereby strong photon-photon repulsion prevents a quantum optical system from absorbing multiple photons. We theoretically study a single atom coupled to the light field, described by the resonantly driven Jaynes--Cummings model, in which case the photon blockade breaks down in a second order phase transition at a critical drive strength. We show that this transition is associated to the spontaneous breaking of an anti-unitary PT-symmetry. Within a semiclassical approximation we calculate the expectation values of observables in the steady state. We then move beyond the semiclassical approximation and approach the critical point from the disordered (blockaded) phase by reducing the Lindblad quantum master equation to a classical rate equation that we solve. The width of the steady-state distribution in Fock space is found to diverge as we approach the critical point with a simple power-law, allowing us to calculate the critical scaling of steady state observables without invoking mean-field theory. We propose a simple physical toy model for biased diffusion in the space of occupation numbers, which captures the universal properties of the steady state. We list several experimental platforms where this phenomenon may be observed.

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