School of Physics and Astronomy, University of Nottingham, Nottingham, NG7 2RD, United Kingdom.
Phys Rev Lett. 2010 Apr 23;104(16):160601. doi: 10.1103/PhysRevLett.104.160601. Epub 2010 Apr 19.
We apply the large-deviation method to study trajectories in dissipative quantum systems. We show that in the long time limit the statistics of quantum jumps can be understood from thermodynamic arguments in terms of dynamical phases and transitions between them in trajectory space. We illustrate our approach with three simple examples: a driven 2-level system where we find a particular scale invariance point in the ensemble of trajectories of emitted photons; a blinking 3-level system, where we argue that intermittency in the photon count is related to a crossover between distinct dynamical phases; and a micromaser, where we find an actual first-order phase transition in the ensemble of trajectories.
我们应用大偏差方法研究耗散量子系统中的轨迹。我们表明,在长时间极限下,量子跃迁的统计可以根据轨迹空间中的动力学相及其之间的转变从热力学角度来理解。我们用三个简单的例子来说明我们的方法:一个受驱动的 2 能级系统,其中我们在发射光子的轨迹的轨迹中发现了一个特定的标度不变点;一个闪烁的 3 能级系统,其中我们认为光子计数的间歇性与不同动力学相之间的交叉有关;以及一个微激射器,其中我们在轨迹的轨迹中发现了一个实际的一级相变。