Yue Jian, Wang Jinkai, Zhang Li, Wang Chunxue, Han Lei, Cui Zhanchen, Zhang Daming, Shi Zuosen, Chen Changming
Opt Express. 2023 Nov 6;31(23):39140-39152. doi: 10.1364/OE.505459.
In this work, programmable optical switching integrated chips for 4-bit binary true/inverse/complement optical code conversions (OCCs) are proposed based on fluorinated photopolymers. Fluorinated bis-phenol-A novolac resin (FAR) with low absorption loss and fluorinated polyacrylate (FPA) with high thermal stability are self-synthesized as core and cladding layer, respectively. The basic architecture of operating unit for the photonic chip designed is composed of directional coupler Mach-Zehnder interferometer (DC-MZI) thermo-optic (TO) switching, X-junction, and Y-bunching waveguide structures. The waveguide module by cascading 16 operating units could realize OCCs function through optical transmission matrix. The response time of the 4-bit binary OCCs is measured as about 300 µs. The insertion loss and extinction ratio of the actual chip are obtained as about 10.5 dB and 15.2 dB, respectively. The electric driving power consumption for OCCs is less than 6 mW. The true/inverse/complement OCCs are achieved by the programmable modulation circuit. The proposed technique is suitable for achieving optical digital computing system with high-speed signal processing and low power consumption.
在这项工作中,基于氟化光聚合物提出了用于4位二进制真/反/补光码转换(OCC)的可编程光开关集成芯片。分别自合成了具有低吸收损耗的氟化双酚A酚醛清漆树脂(FAR)和具有高热稳定性的氟化聚丙烯酸酯(FPA)作为芯层和包层。所设计的光子芯片操作单元的基本架构由定向耦合器马赫-曾德尔干涉仪(DC-MZI)热光(TO)开关、X结和Y束波导结构组成。通过级联16个操作单元的波导模块可通过光传输矩阵实现OCC功能。测得4位二进制OCC的响应时间约为300微秒。实际芯片的插入损耗和消光比分别约为10.5 dB和15.2 dB。OCC的电驱动功耗小于6 mW。真/反/补OCC通过可编程调制电路实现。所提出的技术适用于实现具有高速信号处理和低功耗的光数字计算系统。