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It is not surprising that research in this area fell off sharply in the 1990s. The problem with this approach is that optical transistors are quite large and vastly inferior to complementary metal oxide semiconductor (CMOS) transistors in density, power consumption, cascadability, and other factors. Research and development in optical computing focused on achieving ultrahigh-speed calculations exploiting the immense broadband of light continued throughout the 1980s. Introduction of optical technology in arithmetic chips Processor trends and transistor-generated delay. Particularly in situations requiring spinal reflexive speed response, this calls for a significant technological breakthrough in the development of arithmetic processors capable of responding at super high speed.įig. In other words, basic throughput continues to improve through integration and parallelization, but reductions in latency or delay have reached a plateau. However, the frequency response has leveled off, as one can see in Fig. Improvements are still being achieved in the processing capacity of processors by increasing the number of cores and enhancing parallelization. Importance of ultralow latency operations