Li Gan-Ming, Li Ao, Su Sheng-Jie, Zhao Yuan, Huang Kai-Yu, Zhou Guo-Peng, Xue Li, Xu Si-Liu
Opt Express. 2021 Apr 26;29(9):14016-14024. doi: 10.1364/OE.426056.
Realizing vector spatiotemporal solitons that are stable in high dimensions is a long-standing goal in the study of nonlinear optical physics. Here, a scheme is proposed to generate three-dimensional (3D) vector spatiotemporal solitons in a cold atomic system with linear and nonlinear parity-time (PT) potentials by utilizing electromagnetically induced transparency (EIT). We investigate the existence and stability of these vector 3D semilunar solitons (SSs) and vortex solitons (VSs) supported by the linear and nonlinear PT potentials. The results show that these solitons have extremely low generation power and very slow propagation velocity and can stably propagate with constant total energy in this system. The frontal head-on collisions of two vector solitons feature quasi-elastic collisions. The dynamics characteristics of these solitons depend on the linear and nonlinear PT-symmetric potential parameters, in particular, the imaginary part of PT potentials. Our study provides a new route for manipulating high-dimensional nonlinear vector optical signals via the controlled optical linear and nonlinear potentials in cold atomic gases.
在高维中实现稳定的矢量时空孤子是非线性光学物理研究中长期以来的目标。在此,提出了一种利用电磁诱导透明(EIT)在具有线性和非线性宇称时间(PT)势的冷原子系统中产生三维(3D)矢量时空孤子的方案。我们研究了由线性和非线性PT势支持的这些矢量3D半月形孤子(SSs)和涡旋孤子(VSs)的存在性和稳定性。结果表明,这些孤子具有极低的产生功率和非常慢的传播速度,并且可以在该系统中以恒定的总能量稳定传播。两个矢量孤子的正面碰撞具有准弹性碰撞的特征。这些孤子的动力学特性取决于线性和非线性PT对称势参数,特别是PT势的虚部。我们的研究为通过冷原子气体中可控的光学线性和非线性势来操纵高维非线性矢量光信号提供了一条新途径。