论文标题
稳定的高维弱光孤子分子及其主动对照
Stable high-dimensional weak-light soliton molecules and their active control
论文作者
论文摘要
孤子,别名孤子分子(SMS)的结合状态在一维(1D)系统中是众所周知的,同时使多维孤子的稳定结合状态是一个具有挑战性的问题,因为基本的不稳定性。在这里,我们提出了一种在冷rydberg原子气体中创建稳定(2+1)D和(3+1)D的方案,其中电磁诱导的透明度(EIT)是由对照激光场诱导的。我们表明,通过EIT的相互作用和Rydberg原子之间的强长期相互作用,系统产生了巨大的非局部非局部Kerr非线性,从而支持稳定(2+1)D空间光学SMS,以及环形的孤子项链,包括旋转的旋转项。它们具有大尺寸,低生成能力,可以通过调整Kerr非线性的非局部性程度来有效地操纵。稳定的(3+1)D时空光学SMS,由基本或涡流孤子组成,具有低功率和超级词的传播速度,也可以在系统中产生。这些SM可以通过关闭控制激光场的关闭和打开来存储和检索。此处报告的发现提出了对光学系统中数据处理和传输的应用。
Bound states of solitons, alias soliton molecules (SMs), are well known in one-dimensional (1D) systems, while making stable bound states of multidimensional solitons is a challenging problem because of the underlying instabilities. Here we propose a scheme for the creation of stable (2+1)D and (3+1)D optical SMs in a gas of cold Rydberg atoms, in which electromagnetically induced transparency (EIT) is induced by a control laser field. We show that, through the interplay of the EIT and the strong long-range interaction between the Rydberg atoms, the system gives rise to giant nonlocal Kerr nonlinearity, which in turn supports stable (2+1)D spatial optical SMs, as well as ring-shaped soliton necklaces, including rotating ones. They feature a large size, low generation power, and can be efficiently manipulated by tuning the nonlocality degree of the Kerr nonlinearity. Stable (3+1)D spatiotemporal optical SMs, composed of fundamental or vortex solitons, with low power and ultraslow propagation velocity, can also be generated in the system. These SMs can be stored and retrieved through the switching off and on of the control laser field. The findings reported here suggest applications to data processing and transmission in optical systems.