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Characteristics of cavity solitons and drifting excitations in broad-area vertical-cavity surface-emitting lasers with frequency-selective feedback

机译:具有频率选择反馈的宽面垂直腔表面发射激光器中腔孤子的特性,漂移激励

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摘要

The properties of cavity solitons in a vertical-cavity surface-emitting laser with frequency-selective feedback from a diffraction grating are characterized and analyzed. The solitons have a typical width of 10 mu m and a linewidth of down to 10 MHz, i.e., they represent small microlasers. Their equilibrium spatial location arises from an interplay of spatial inhomogeneities in the device and a grating-induced force which depends on detuning. Transients involve the passage through a self-pulsing state. Due to the grating-induced advection, drifting excitations are found, which might have applications in all-optical delay lines though their solitonic nature remains to be established.
机译:具有来自衍射光栅的频率选择性反馈的垂直腔表面发射激光器中腔孤子的性质进行了特征和分析。 孤子的典型宽度为10μm,宽度为10mHz,即,它们代表小微加工。 它们的平衡空间位置来自装置中的空间不均匀性的相互作用和粘附诱导的力,这取决于静脉静脉。 瞬变涉及通过自脉冲状态的通道。 由于光栅诱导的平程,发现了漂移激发,这可能在所有光学延迟线中具有应用,尽管它们的孤子性质仍有待建立。

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