非奇偶-时间对称耦合器中的非局域孤子

IF 0.8 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY Acta Physica Sinica Pub Date : 2023-01-01 DOI:10.7498/aps.72.20230082
Jiang Hong-Fan, Lin Ji, Hu Bei-Bei, Zhang Xiao
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引用次数: 1

摘要

奇偶时间对称并不是获得实谱的必要条件,近年来对具有任意增益损耗曲线的非奇偶时间对称系统实现实谱进行了一些研究。通过调整非pt对称电位中的自由参数,也可以诱导相变。在相变点以上,连续谱内部的连续实特征值从离散复特征值中分叉出来。本文研究了非pt对称复势相变下和相变上的非局部非线性耦合器中孤子的存在性和稳定性。在这里使用的非pt对称系统的线性谱中有几个离散的特征值。利用平方算子迭代法,我们发现不同的连续解族可以从不同的离散线性特征值中分叉。此外,线性稳定性分析与直接数值传播模拟相结合,表明非局部解在一定参数范围内是稳定的。我们首先处理相变下面的情况。具体而言,当我们固定耦合系数并改变非定域性程度时,发现基本孤子、偶极孤子、三极孤子、四极孤子分别从最大、第二大、第三大和第五大离散特征值分叉。这些非局域孤子在低功率域中都是稳定的。随着非定域性程度的增加,基本孤子的稳定区域缩小,而偶极子和多重孤子的稳定区域变宽。同时,所有稳定孤子的幂都随非定域程度的增加而增加。通过改变耦合系数,可以改变线性谱离散区间孤子族的排列。例如,偶极孤子从第三或第四大离散特征值分岔,而三极孤子从第五大离散特征值分岔。在相变以上,基本孤子在低功率和高功率区域不稳定,而在中功率区域稳定。稳定区域随着非定域程度的增加而缩小。我们也发现偶极孤子族从第二大离散特征值分叉,但所有的偶极孤子都是不稳定的。此外,我们发现孤子的线性稳定谱的特征值以共轭对的形式出现。
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Nonlocal soliton in non-parity-time-symmetric coupler
Parity-time (PT)symmetric is not a necessary condition for achieving a real spectrum and some studies about realizing real spectra in non-PT-symmetric systems with arbitrary gain–loss profiles have been presented recently. By tuning the free parameters in non-PT-symmetric potentials, phase transition could also be induced. Above phase transition point, discrete complex eigenvalues bifurcate out from continuous real eigenvalues in the interior of the continuous spectrum. In this work, we investgate the existence and stability of solitons in nonlocal nonlinear couplers with non-PT-symmetric complex potentials both below and above phase transition. There are several discrete eigenvalues in the linear spectra of the non-PT-symmetric system used here. With the square-operator iteration method, we find that different continuous families of solitions can bifurcate from different discrete linear eigenvalues. Moreover, linear-stability analysis collaborated with direct numerical propagation simulations demonstrates that the nonlocal solitions can be stable in a range of parameter values. we first address the cases below the phase transition. To be specific,when we fix the coupling coefficient and vary the degree of nonlocality, it’s found that fundamental solitons, dipole solitons, tripolar solitons, quadrupole solitons bifurcate from the largest,the second-largest, the third-largest and the fifth-largest discrete eigenvalue, respectively. These nonlocal solitons are all stable in the low power region. With an increase of the degree of nonlocality, the stability region shrinks for the fundamental solitons while it widens for the dipole and multiplole solitons. At the same time, the power of all the stable solitons increases with the increase of the degree of nonlocality. By varying the coupling coefficient, the arrangement of soliton families emerging in the discrete interval of the linear spectrum can be changed. For example, the dipole solitons bifurcate from the third-or fourth-largest discrete eigenvalue while the tripolar solitons bifurcate from the fifth largest discrete eigenvalue. Above phase transition,the fundamental solitons are unstable in the low and high power region but are stable in the moderate power region. The stability region shrinks with the increasing degree of nonlocality. We also find the the family of dipole solitons bifurcates from the second-largest discrete eigenvalue, but all the dipole solitons are unstable. In addition,we find that the eigenvalues in linear-stability spectra of solitons emerge as conjugation pairs.
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来源期刊
Acta Physica Sinica
Acta Physica Sinica 物理-物理:综合
CiteScore
1.70
自引率
30.00%
发文量
31245
审稿时长
1.9 months
期刊介绍: Acta Physica Sinica (Acta Phys. Sin.) is supervised by Chinese Academy of Sciences and sponsored by Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences. Published by Chinese Physical Society and launched in 1933, it is a semimonthly journal with about 40 articles per issue. It publishes original and top quality research papers, rapid communications and reviews in all branches of physics in Chinese. Acta Phys. Sin. enjoys high reputation among Chinese physics journals and plays a key role in bridging China and rest of the world in physics research. Specific areas of interest include: Condensed matter and materials physics; Atomic, molecular, and optical physics; Statistical, nonlinear, and soft matter physics; Plasma physics; Interdisciplinary physics.
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