Sahin Serkan, Zhang Minghui, Chen Yahong, Cai Yangjian
J Opt Soc Am A Opt Image Sci Vis. 2018 Sep 1;35(9):1604-1611. doi: 10.1364/JOSAA.35.001604.
We derive analytical expressions for the cross-spectral density matrix of polychromatic electromagnetic multi-Gaussian Schell-model (EMGSM) beam transmission through a gradient-index fiber. The space-spectrum evolution properties for the spectral density, spectral shift, degree of polarization, and electromagnetic coherence state of a polychromatic EMGSM beam with Lorentzian line type spectrum and central wavelength λ=1550 nm propagation in a silica-clad germania core inhomogeneous graded-index fiber are studied in detail. We show that these statistical properties exhibit periodicity in the fiber, caused by the focusing property of square-law media, which can be reminiscent of the self-imaging effect of optical fields. The effects of the nonconventional correlation functions of the polychromatic EMGSM beam on the transmission properties are also investigated.
我们推导了多色电磁多高斯谢尔模型(EMGSM)光束通过渐变折射率光纤传输时的交叉谱密度矩阵的解析表达式。详细研究了具有洛伦兹线型光谱且中心波长λ = 1550 nm的多色EMGSM光束在包层为二氧化硅、纤芯为锗酸盐的非均匀渐变折射率光纤中传输时,其光谱密度、光谱频移、偏振度和电磁相干态的空间谱演化特性。我们表明,这些统计特性在光纤中呈现周期性,这是由平方律介质的聚焦特性引起的,这可以让人联想到光场的自成像效应。还研究了多色EMGSM光束的非常规相关函数对传输特性的影响。