Kibler B, Michel C, Kudlinski A, Barviau B, Millot G, Picozzi A
Laboratoire Interdisciplinaire Carnot de Bourgogne, UMR 5209 CNRS-Université de Bourgogne, FR-21078 Dijon, France.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Dec;84(6 Pt 2):066605. doi: 10.1103/PhysRevE.84.066605. Epub 2011 Dec 19.
We report an experimental and numerical study of the spontaneous emergence of spectral incoherent solitons through supercontinuum generation in a two zero-dispersion wavelengths photonic crystal fiber. By using a simple experimental setup, we show that the highly nonlinear regime of supercontinuum generation is characterized by the emergence of a spectral incoherent soliton in the low-frequency edge of the supercontinuum spectrum. We show that a transition occurs from the discrete spectral incoherent soliton to its continuous counterpart as the power of the laser is increased. Contrary to conventional solitons, spectral incoherent solitons do not exhibit a confinement in the space-time domain, but solely in the frequency domain. These incoherent structures owe their existence to the noninstantaneous nature of the nonlinear Raman effect and, more specifically, to the causality property underlying the Raman response function.
我们报告了一项关于在具有两个零色散波长的光子晶体光纤中通过超连续谱产生自发出现光谱非相干孤子的实验和数值研究。通过使用一个简单的实验装置,我们表明超连续谱产生的高度非线性区域的特征是在超连续谱的低频边缘出现一个光谱非相干孤子。我们表明,随着激光功率的增加,会发生从离散光谱非相干孤子到其连续对应物的转变。与传统孤子相反,光谱非相干孤子在时空域中不表现出限制,而仅在频域中表现出限制。这些非相干结构的存在归因于非线性拉曼效应的非瞬时性质,更具体地说,归因于拉曼响应函数所基于的因果性特性。