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The Moore's Law for photonic integrated circuits

机译:光子集成电路的摩尔定律

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We formulate a "Moore's law" for photonic integrated circuits (PICs) and their spatial integration density using two methods. One is decomposing the integrated photonics devices of diverse types into equivalent basic elements, which makes a comparison with the generic elements of electronic integrated circuits more meaningful. The other is making a complex component equivalent to a series of basic elements of the same functionality, which is used to calculate the integration density for functional components realized with different structures. The results serve as a benchmark of the evolution of PICs and we can conclude that the density of integration measured in this way roughly increases by a factor of 2 per year. The prospects for a continued increase of spatial integration density are discussed.
机译:我们使用两种方法为光子集成电路(PIC)及其空间集成密度制定了“摩尔定律”。一种是将各种类型的集成光子器件分解为等效的基本元件,这使得与电子集成电路的通用元件进行比较更加有意义。另一个方法是使复杂的组件等效于具有相同功能的一系列基本元素,该组件用于计算使用不同结构实现的功能组件的集成密度。结果可作为PIC演变的基准,我们可以得出结论,以这种方式测得的集成密度每年大约增加2倍。讨论了空间集成密度持续增加的前景。

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