Zhang Yiqi, Liu Xing, Belić Milivoj R, Zhong Weiping, Zhang Yanpeng, Xiao Min
Key Laboratory for Physical Electronics and Devices of the Ministry of Education & Shaanxi Key Lab of Information Photonic Technique, Xi'an Jiaotong University, Xi'an 710049, China.
Science Program, Texas A&M University at Qatar, P.O. Box 23874 Doha, Qatar.
Phys Rev Lett. 2015 Oct 30;115(18):180403. doi: 10.1103/PhysRevLett.115.180403. Epub 2015 Oct 27.
The dynamics of wave packets in the fractional Schrödinger equation is still an open problem. The difficulty stems from the fact that the fractional Laplacian derivative is essentially a nonlocal operator. We investigate analytically and numerically the propagation of optical beams in the fractional Schrödinger equation with a harmonic potential. We find that the propagation of one- and two-dimensional input chirped Gaussian beams is not harmonic. In one dimension, the beam propagates along a zigzag trajectory in real space, which corresponds to a modulated anharmonic oscillation in momentum space. In two dimensions, the input Gaussian beam evolves into a breathing ring structure in both real and momentum spaces, which forms a filamented funnel-like aperiodic structure. The beams remain localized in propagation, but with increasing distance display an increasingly irregular behavior, unless both the linear chirp and the transverse displacement of the incident beam are zero.
分数阶薛定谔方程中波包的动力学仍然是一个未解决的问题。困难源于分数阶拉普拉斯导数本质上是一个非局部算子这一事实。我们对具有谐波势的分数阶薛定谔方程中光束的传播进行了分析和数值研究。我们发现一维和二维输入啁啾高斯光束的传播不是谐波性的。在一维中,光束在实空间中沿锯齿形轨迹传播,这对应于动量空间中的调制非谐振荡。在二维中,输入高斯光束在实空间和动量空间中都演变成呼吸环结构,形成丝状漏斗状非周期结构。光束在传播过程中保持局域化,但随着距离增加,除非入射光束的线性啁啾和横向位移都为零,否则会表现出越来越不规则的行为。