Genway Sam, Garrahan Juan P, Lesanovsky Igor, Armour Andrew D
School of Physics and Astronomy, University of Nottingham, Nottingham, NG7 2RD, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 May;85(5 Pt 1):051122. doi: 10.1103/PhysRevE.85.051122. Epub 2012 May 16.
Recent progress in the study of dynamical phase transitions has been made with a large-deviation approach to study trajectories of stochastic jumps using a thermodynamic formalism. We study this method applied to an open quantum system consisting of a superconducting single-electron transistor, near the Josephson quasiparticle resonance, coupled to a resonator. We find that the dynamical behavior shown in rare trajectories can be rich even when the mean dynamical activity is small, and thus the formalism gives insights into the form of fluctuations. The structure of the dynamical phase diagram found from the quantum-jump trajectories of the resonator is studied, and we see that sharp transitions in the dynamical activity may be related to the appearance and disappearance of bistabilities in the state of the resonator as system parameters are changed. We also demonstrate that for a fast resonator, the trajectories of quasiparticles are similar to the resonator trajectories.
利用热力学形式体系的大偏差方法来研究随机跳跃的轨迹,在动力学相变研究方面取得了最新进展。我们研究了这种方法应用于一个开放量子系统的情况,该系统由一个超导单电子晶体管组成,靠近约瑟夫森准粒子共振,与一个谐振器耦合。我们发现,即使平均动力学活性较小,罕见轨迹中显示的动力学行为也可能很丰富,因此该形式体系能深入了解涨落的形式。研究了从谐振器的量子跳跃轨迹得出的动力学相图结构,我们发现随着系统参数的变化,动力学活性的急剧转变可能与谐振器状态中双稳性的出现和消失有关。我们还证明,对于快速谐振器,准粒子的轨迹与谐振器的轨迹相似。