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Dissipative defect modes in periodic structures

机译:周期结构中的耗散缺陷模式

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摘要

We show that periodic optical lattices imprinted in cubic nonlinear media with strong two-photon absorption and localized linear gain landscapes support stable dissipative defect modes in both focusing and defocusing media. Their shapes and transverse extent are determined by the propagation constant that belongs to a gap of the lattice spectrum, which, in turn, is determined by the relation between gain and losses. One-hump and two-hump dissipative defect modes are obtained.
机译:我们表明,在具有强双光子吸收和局域线性增益景观的立方非线性介质中刻印的周期性光学晶格在聚焦和散焦介质中都支持稳定的耗散缺陷模式。它们的形状和横向范围由属于晶格谱间隙的传播常数确定,而传播常数又由增益和损耗之间的关系确定。获得一峰和两峰的耗散缺陷模式。

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