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Ultra-short silicon MMI duplexer

机译:超短硅MMI双工器

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摘要

The fiber-to-the-home (FTTH) systems are growing fast these days, where two different wavelengths are used for upstream and downstream traffic, typically 1310nm and 1490nm. The duplexers are the key elements to separate these wavelengths into different path in central offices (CO) and optical network unit (ONU) in passive optical network (PON). Multimode interference (MMI) has some benefits to be a duplexer including large fabrication tolerance, low-temperature dependence, and low-polarization dependence, but its size is too large to integrate in conventional case. Based on the silicon photonics platform, ultra-short silicon MMI duplexer was demonstrated to separate the 1310nm and 1490nm lights. By studying the theory of self-image phenomena in MMI, the first order images are adopted in order to keep the device short. A cascaded MMI structure was investigated to implement the wavelength splitting, where both the light of 1310nm and 1490nm was input from the same port, and the 1490nm light was coupling cross the first MMI and output at the cross-port in the device while the 1310nm light was coupling through the first and second MMI and output at the bar-port in the device. The experiment was carried on with the SOI wafer of 340nm top silicon. The cascaded MMI was investigated to fold the length of the duplexer as short as 117μm with the extinct ratio over 10dB.
机译:如今,光纤到户(FTTH)系统正在快速发展,其中两种不同的波长用于上行和下行流量,通常为1310nm和1490nm。双工器是将这些波长分为中心局(CO)和无源光网络(PON)中的光网络单元(ONU)的不同路径的关键元素。多模干扰(MMI)成为双工器具有一些好处,包括大的制造公差,低温依赖性和低极化依赖性,但是其尺寸太大,无法在常规情况下进行集成。基于硅光子学平台,超短硅MMI双工器被证明可以分离1310nm和1490nm的光。通过研究MMI中的自我图像现象的理论,采用一阶图像来使设备保持较短。研究了级联MMI结构以实现波长分离,其中1310nm和1490nm的光均从同一端口输入,并且1490nm的光穿过第一个MMI耦合并在设备的交叉端口处输出,而1310nm光通过第一和第二MMI耦合并在设备的条形端口输出。实验是用340nm顶层硅的SOI晶片进行的。研究了级联的MMI,将双工器的长度折短至117μm,消光比超过10dB。

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