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Vertical-Cavity Semiconductor Optical Amplifiers (VCSOAs) as optical sensing elements

机译:垂直腔半导体光放大器(VCSOA)作为光学传感元件

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Semiconductor Optical Amplifiers (SOAs) have mainly found application in optical telecommunication networks for optical signal regeneration, wavelength switching or wavelength conversion. The objective of this paper is to report the use of semiconductor optical amplifiers for optical sensing taking into account their optical bistable properties. As it was previously reported, some semiconductor optical amplifiers, including Fabry-Perot and Distributed-Feedback Semiconductor Optical Amplifiers (FPSOAs and DFBSOAs), may exhibit optical bistability. The characteristics of the attained optical bistability in this kind of devices are strongly dependent on different parameters including wavelength, temperature or applied bias current and small variations lead to a change on their bistable properties. As in previous analyses for Fabry-Perot and DFB SOAs, the variations of these parameters and their possible application for optical sensing are reported in this paper for the case of the Vertical-Cavity Semiconductor Optical Amplifier (VCSOA). When using a VCSOA, the input power needed for the appearance of optical bistability is one order of magnitude lower than that needed in edge-emitting devices. This feature, added to the low manufacturing costs of VCSOAs and the ease to integrate them in 2-D arrays, makes the VCSOA a very promising device for its potential use in optical sensing applications.
机译:半导体光放大器(SOA)主要发现在光学电信网络中的应用,用于光信号再生,波长切换或波长转换。本文的目的是报告使用半导体光放大器进行光学感测,考虑到它们的光学双稳态性能。如前所述,一些半导体光放大器包括法布里 - 珀罗和分布式反馈半导体光放大器(FPSOAS和DFBSOA),可以表现出光学双稳态。在这种装置中获得的光学双稳定性的特性强烈地取决于包括波长,温度或施加的偏置电流的不同参数,并且小变化导致它们的双稳态性质的变化。与Fabry-Perot和DFB SOA的先前分析一样,本文报道了垂直腔半导体光放大器(VCSOA)的情况下本文报道了这些参数的变化及其对光学感测的应用。当使用VCSO时,光学双稳定性外观所需的输入功率比边缘发射器件中所需的一个量级低。此功能添加到VCSOA的低制造成本以及在2-D阵列中将其集成在一起,使VCSOA成为其在光学传感应用中的潜在使用的非常有希望的装置。

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