基于光子技术的电信网络要素的物理过程

R. Isaev, V. V. Frolova
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引用次数: 0

摘要

光子化在当今光纤网络中不可思议的潜力,一根光纤可以同时支持多达30万个电话。但是所有完全开发的光子学的能量都远远达到了这些极限。虽然电子可以连续地、一个接一个地传递信息,但对于光子,可以同时传递的信息包的数量没有虚拟限制。例如,据估计,光子互联网可以以160Gb/s的速度传输数据,比典型的现代高速连接快千倍。另一个机会是光学计算机,它可以在几秒钟内解决经典计算机需要几个月甚至几年才能解决的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
About physical processes in elements of a network of telecommunication on the basis of photon technologies
The improbable potential of photonisation in today's fibre-optical networks where one optical fibre can support up to 300,000 phone calls simultaneously. But all power completely developed of photonisation reaches far for these limits. While electrons can transfer the information consistently, one after another, with photons there is no virtual limit on number of information packages which can be simultaneously transferred. For example, it has been estimated, that the photon Internet can transfer data with a speed 160Gb/s, that in thousand times is faster, than typical modern high-speed connections. Other opportunity is an optical computer, which can solve for seconds a problem which classical computers would process months, and even years.
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