Sreevani Alluru, Charles Ipshitha, Swarnakar Sandip, Krishna Sabbi Vamshi, Kumar Santosh
Appl Opt. 2022 Feb 10;61(5):1212-1218. doi: 10.1364/AO.451871.
All-optical logic gates are exceptionally suited for Boolean ultrahigh-speed operation and logical computing. This study presents a plasmonic model that uses a Y-shaped metal-insulator-metal waveguide structure that realizes the ultrafast all-optical AND, XOR, and XNOR gate operation that is developed at a footprint of 6.6µ×3.4µ with a wavelength of 1.55 µm. This construction relies on the notion of linear interference. The insertion loss and extinction ratio of the model are observed as 1.49 dB and 21.49 dB for AND, 1.03 dB and 18.97 dB for XOR, and 2.06 dB, and 10.92 dB for XNOR, respectively. The transmission efficiency, response time, and speed of the structure also are calculated and are used to improve the performance of any complex circuit in the future. The theoretical analysis of the proposed structure is carried out using the finite-difference time-domain method.
全光逻辑门特别适用于布尔超高速运算和逻辑计算。本研究提出了一种等离子体模型,该模型使用Y形金属-绝缘体-金属波导结构,实现了超快全光与门、异或门和同或门操作,其在波长为1.55µm时的占地面积为6.6µ×3.4µ。这种结构基于线性干涉的概念。该模型的插入损耗和消光比,与门分别为1.49dB和21.49dB,异或门分别为1.03dB和18.97dB,同或门分别为2.06dB和10.92dB。还计算了该结构的传输效率、响应时间和速度,并用于未来改进任何复杂电路的性能。使用时域有限差分法对所提出的结构进行了理论分析。