论文标题
微孔调制器的光学隔离
Optical Isolation with Microring Modulators
论文作者
论文摘要
光学隔离器虽然在散装和光纤系统中均匀,但在集成光子系统中仍然是关键的缺失组件。由于制造约束,使用磁化效应的隔离很难实施,从而激发了其他非转录效应(例如时间调制)的使用。我们演示了一个非转录调节剂,其中包括一对微孔调制器和一个在活动硅光子过程中的微孔相位变速器,该过程与标准频过滤器结合使用,促进分离。以3 dB的带宽为2 GHz,插入损失为18 dB,最高为13 dB。由于一种潜在的应用是在双向通信链接中的串扰抑制,因此我们还显示了4 Gbps数据信号通过隔离器的传输,同时保留了广泛的眼睛图。这种紧凑的设计结合了提高的调制效率,可以使基于调制器的隔离器成为集成光子铸造平台组件库中的标准“黑盒”组件。
Optical isolators, while commonplace in bulk- and fiber-optic systems, remain a key missing component in integrated photonic systems. Isolation using magneto-optic effects has been difficult to implement due to fabrication restraints, motivating use of other non-reciprocal effects such as temporal modulation. We demonstrate a non-reciprocal modulator comprising a pair of microring modulators and a microring phase shifter in an active silicon photonic process which, in combination with standard frequency filters, facilitates isolation. Isolation up to 13 dB is measured with a 3 dB bandwidth of 2 GHz and insertion loss of 18 dB. As one potential application is cross-talk suppression in bi-directional communication links, we also show transmission of a 4 Gbps data signal through the isolator while retaining a wide-open eye diagram. This compact design, in combination with increased modulation efficiency, could enable modulator-based isolators to become a standard `black-box' component in integrated photonics foundry platform component library.