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Data Transparent and Polarization Insensitive All-Optical Switch based on Fibers with Enhanced Nonlinearity

机译:基于增强非线性的光纤的数据透明和偏振不敏感全光开关

摘要

We have developed a data transparent optical packet switch prototype employing wavelength conversion based on four-wave mixing. The switch is composed of an electro-optical control unit and an all-optical switching segment. To achieve higher switching efficiencies, Ge-doped silica suspended-core and chalcogenide arsenicselenide single-mode fibers were experimentally evaluated and compared to conventional highly-nonlinear fiber. Improved connectorization technology has been developed for Ge-doped suspended-core fiber, where we achieved connection losses of 0.9 dB. For the arsenic-selenide fiber we present a novel solid joint technology, with connection losses of only 0.25 dB, which is the lowest value presented up-to-date. Conversion efficiency of -13.7 dB was obtained for the highly-nonlinear fiber, which is in perfect correlation with previously published results and thus verifies the functionality of the prototype. Conversion efficiency of -16.1 dB was obtained with arsenic-selenide fiber length reduced to five meters within simulations, based on measurement results with a 26 m long component. Employment of such a short arsenic-selenide fiber segment allows significant broadening of the wavelength conversion spectral range due to possible neglection of dispersion.
机译:我们已经开发出一种基于四波混频的波长转换的数据透明光分组交换机原型。开关由电光控制单元和全光开关段组成。为了获得更高的转换效率,实验评估了掺Ge的二氧化硅悬浮核和硫属化物砷化硒化物单模光纤,并将其与常规的高度非线性光纤进行了比较。已经为掺锗的悬浮芯光纤开发了改进的连接器技术,在该技术中,我们实现了0.9 dB的连接损耗。对于硒化砷纤维,我们提出了一种新颖的固态接头技术,其连接损耗仅为0.25 dB,这是最新提出的最低值。对于高度非线性的光纤,转换效率为-13.7 dB,与先前发表的结果完全相关,从而验证了原型的功能。基于26 m长分量的测量结果,在模拟中将硒化砷纤维长度减少到5米,获得了-16.1 dB的转换效率。由于可能忽略了色散,因此使用如此短的砷化硒纤维段允许显着拓宽波长转换光谱范围。

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