论文标题
动态包围的特殊点在很大程度上失调的多模光学系统
Dynamical encircling exceptional point in largely detuned multimode optomechanical system
论文作者
论文摘要
动力环绕异常点(EP)显示了许多有趣的物理现象及其潜在的应用。为了丰富实验中光学系统的操作,我们在这里研究了动态环绕EP,即状态转移过程,在很大程度上失调的多模光学系统中。已经对状态转移的过程进行了不同的因素,涉及起点的位置,参数空间中EP周围的轨迹的定向和初始状态。结果表明,通过调整具有较大失调的多模系统中的有效光学机械耦合,成功执行了两种光学模式之间的非偏型和手性拓扑能量转移。此外,还讨论了有关系统参数的进化速度因素。我们的工作证明了多模光学系统大型引导域中EP围绕EP的基本物理学,并为操纵非炎性系统中的光学模式提供了替代方案。
Dynamical encircling exceptional point(EP) shows a number of intriguing physical phenomena and its potential applications. To enrich the manipulations of optical systems in experiment, here, we study the dynamical encircling EP, i.e. state transfer process, in largely detuned multimode optomechanical system. The process of state transfer has been investigated with different factors about the location of start point, the orientation and the initial state of the trajectories around the EP in parameter space. Results show that the nonreciprocal and the chiral topological energy transfer between two optical modes are performed successfully by tuning the effective optomechanical coupling in the multimode system with large detuning. Moreover, the factor of evolution speed about system parameters is also discussed. Our work demonstrates the fundamental physics around EP in large detuning domain of multimode optomechanical system and provides an alternative for manipulating of optical modes in non-hermitian system.