Adamyan H H, Manvelyan S B, Kryuchkyan G Y
Yerevan State University, Manookyan 1, Yerevan, 375049, Armenia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Oct;64(4 Pt 2):046219. doi: 10.1103/PhysRevE.64.046219. Epub 2001 Sep 25.
We propose an anharmonic oscillator driven by two periodic forces of different frequencies as a time-dependent model for investigating quantum dissipative chaos. Our analysis is done in the framework of the statistical ensemble of quantum trajectories in a quantum state diffusion approach. The quantum dynamical manifestations of chaotic behavior, including the emergence of chaos, properties of strange attractors, and quantum entanglement, are studied by numerical simulation of the ensemble averaged Wigner function and von Neumann entropy.
我们提出一个由两个不同频率的周期性力驱动的非简谐振子,作为研究量子耗散混沌的含时模型。我们的分析是在量子态扩散方法中的量子轨迹统计系综框架内进行的。通过对系综平均维格纳函数和冯·诺依曼熵的数值模拟,研究了混沌行为的量子动力学表现,包括混沌的出现、奇异吸引子的性质以及量子纠缠。