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具有聚焦泵浦的卢吉阿托-勒菲弗尔方程的局域解

Localized solutions of Lugiato-Lefever equations with focused pump.

作者信息

Cardoso Wesley B, Salasnich Luca, Malomed Boris A

机构信息

Instituto de Física, Universidade Federal de Goiás, 74.690-900, Goiánia, Goiás, Brazil.

Dipartimento di Fisica e Astronomia "Galileo Galilei" and CNISM, Universitá di Padova, Via Marzolo 8, 35131, Padova, Italy.

出版信息

Sci Rep. 2017 Dec 4;7(1):16876. doi: 10.1038/s41598-017-16981-3.

Abstract

Lugiato-Lefever (LL) equations in one and two dimensions (1D and 2D) accurately describe the dynamics of optical fields in pumped lossy cavities with the intrinsic Kerr nonlinearity. The external pump is usually assumed to be uniform, but it can be made tightly focused too-in particular, for building small pixels. We obtain solutions of the LL equations, with both the focusing and defocusing intrinsic nonlinearity, for 1D and 2D confined modes supported by the localized pump. In the 1D setting, we first develop a simple perturbation theory, based in the sech ansatz, in the case of weak pump and loss. Then, a family of exact analytical solutions for spatially confined modes is produced for the pump focused in the form of a delta-function, with a nonlinear loss (two-photon absorption) added to the LL model. Numerical findings demonstrate that these exact solutions are stable, both dynamically and structurally (the latter means that stable numerical solutions close to the exact ones are found when a specific condition, necessary for the existence of the analytical solution, does not hold). In 2D, vast families of stable confined modes are produced by means of a variational approximation and full numerical simulations.

摘要

一维和二维的卢贾托-勒费弗(LL)方程准确描述了具有固有克尔非线性的泵浦有损腔中光场的动力学。通常假设外部泵浦是均匀的,但它也可以被紧密聚焦——特别是为了构建小像素。我们得到了由局域泵浦支持的一维和二维受限模式下LL方程的解,其中包括聚焦和散焦固有非线性。在一维情况下,我们首先在弱泵浦和损耗的情况下,基于双曲正割假设发展了一种简单的微扰理论。然后,对于以δ函数形式聚焦的泵浦,在LL模型中加入非线性损耗(双光子吸收),得到了一族空间受限模式的精确解析解。数值结果表明,这些精确解在动力学和结构上都是稳定的(后者意味着当解析解存在所需的特定条件不成立时,也能找到接近精确解的稳定数值解)。在二维情况下,通过变分近似和全数值模拟得到了大量稳定的受限模式族。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb8f/5715074/efd42d9107b1/41598_2017_16981_Fig1_HTML.jpg

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