Butterfly-shaped and dromion-like optical similaritons in asymmetric twin-core fiber amplifier

IF 1.8 4区 物理与天体物理 Q3 OPTICS Journal of The Optical Society of America B-optical Physics Pub Date : 2023-09-27 DOI:10.1364/josab.501345
Soloman Thokala, Ashwin Myakalwar
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Abstract

Butterfly-shaped and dromion-like optical waves in a tapered graded-index waveguide (GRIN) with an external source are reported for the first time, to our knowledge. More pertinently, we obtain these waves both analytically and numerically in a generalized nonlinear Schrödinger equation (GNLSE), which describes self-similar wave propagation in GRIN with variable group-velocity dispersion (GVD), nonlinearity, gain, and source. The proposed GNLSE appertains to the study of similariton propagation through asymmetric twin-core fiber amplifiers. Dromion-like structures, which have generally been investigated in the (2+1) or higher dimensional systems, are reported in the (1+1) dimensional GNLSE with an external source. Herein, we introduce the concept of soliton management when the variable group-velocity dispersion and Kerr nonlinearity functions are suggested. For example, when the GVD parameter is perturbed, we observe the emergence of vibration of dromion-like structures. Then the dromion-like structure is transformed into oscillation by the modulation instability of the modified coefficient of the Gaussian GVD function, exhibiting interference based on two dromion-like structures. Additionally, the phenomenon of unbreakable P T symmetry of these nonlinear waves has been demonstrated for three explicit examples.
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非对称双芯光纤放大器中蝴蝶形和子形光学相似性
据我们所知,首次报道了有外源的锥形梯度折射率波导(GRIN)中的蝴蝶形和飞蛾状光波。更有针对性的是,我们在广义非线性Schrödinger方程(GNLSE)中得到了这些波的解析和数值,该方程描述了具有变群速色散(GVD),非线性,增益和源的GRIN中的自相似波传播。提出的GNLSE适用于非对称双芯光纤放大器的相似传播研究。通常在(2+1)或更高维度系统中研究的类宿子结构,在有外源的(1+1)维GNLSE中被报道。本文在引入变群速色散和克尔非线性函数时引入了孤子管理的概念。例如,当GVD参数被摄动时,我们观察到类星形结构出现振动。然后利用高斯GVD函数修正系数的调制不稳定性将类宿子结构转化为振荡,表现出基于两个类宿子结构的干涉。此外,通过三个明确的例子证明了这些非线性波的不可破P T对称现象。
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来源期刊
CiteScore
4.00
自引率
5.30%
发文量
374
审稿时长
2.1 months
期刊介绍: The Journal of the Optical Society of America B (JOSA B) is a general optics research journal that complements JOSA A. It emphasizes scientific research on the fundamentals of the interaction of light with matter such as quantum optics, nonlinear optics, and laser physics. Topics include: Advanced Instrumentation and Measurements Fiber Optics and Fiber Lasers Lasers and Other Light Sources from THz to XUV Light-Induced Phenomena Nonlinear and High Field Optics Optical Materials Optics Modes and Structured Light Optomechanics Metamaterials Nanomaterials Photonics and Semiconductor Optics Physical Optics Plasmonics Quantum Optics and Entanglement Quantum Key Distribution Spectroscopy and Atomic or Molecular Optics Superresolution and Advanced Imaging Surface Optics Ultrafast Optical Phenomena Wave Guiding and Optical Confinement JOSA B considers original research articles, feature issue contributions, invited reviews and tutorials, and comments on published articles.
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