Opt Lett. 2023 Feb 1;48(3):747-750. doi: 10.1364/OL.481216.
This paper presents a novel, to the best of our knowledge, method for realizing soliton transformation between different potential wells by gradually manipulating their depths in the propagation direction. The only requirements for such a transformation are that the gradient of the manipulated depth is smooth enough and the solitons in different potential wells are both in the regions of stability. The comparison of transformed solitons with the iterative ones obtained by the accelerated imaginary-time evolution method proves that our method is efficient and reliable. An interesting consequence is that in some complex potential wells in which it is difficult to find solitons by iterative numerical methods, stable solitons can be obtained by the transformation method. The controllable soliton transformation provides an excellent opportunity for all-optical switching, optical information processing, and other applications.
本文提出了一种新颖的方法,据我们所知,可以通过逐渐改变传播方向上的势阱深度来实现不同势阱之间的孤子变换。这种变换的唯一要求是,操纵深度的梯度足够平滑,并且不同势阱中的孤子都处于稳定区域。与通过加速虚时演化方法获得的迭代孤子的比较证明了我们的方法是高效和可靠的。一个有趣的结果是,在一些通过迭代数值方法很难找到孤子的复杂势阱中,可以通过变换方法获得稳定的孤子。可控孤子变换为全光开关、光信息处理等应用提供了极好的机会。