Hsieh Y H, Yu Y T, Tuan P H, Tung J C, Huang K F, Chen Y F
Department of Electrophysics, National Chiao Tung University, 1001 Ta-Hsueh Road, Hsinchu 30010, Taiwan.
Phys Rev E. 2017 Feb;95(2-1):022214. doi: 10.1103/PhysRevE.95.022214. Epub 2017 Feb 21.
The trajectory equations for classical periodic orbits in the equilateral-triangular and circular billiards are systematically extracted from quantum stationary coherent states. The relationship between the phase factors of quantum stationary coherent states and the initial positions of classical periodic orbits is analytically derived. In addition, the stationary coherent states with noncoprime parametric numbers are shown to correspond to the multiple periodic orbits, which cannot be explicable in the one-particle picture. The stationary coherent states are further verified to be linked to the resonant modes that are generally observed in the experimental wave system excited by a localized and unidirectional source. The excellent agreement between the resonant modes and the stationary coherent states not only manifests the importance of classical features in experimental systems but also paves the way to manipulate the mesoscopic wave functions localized on the periodic orbits for applications.
从量子稳态相干态中系统地提取了等边三角形和圆形台球中经典周期轨道的轨迹方程。通过解析推导得出了量子稳态相干态的相位因子与经典周期轨道初始位置之间的关系。此外,还表明具有非互质参数数的稳态相干态对应于多个周期轨道,这在单粒子图像中无法解释。进一步验证了稳态相干态与由局部单向源激发的实验波系统中普遍观察到的共振模式相关联。共振模式与稳态相干态之间的良好一致性不仅体现了经典特征在实验系统中的重要性,也为操纵局域在周期轨道上的介观波函数以用于实际应用铺平了道路。