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Will silicon be the photonics material of the third millennium?

机译:硅会是第三千年的光子学材料吗?

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CMOS circuitry dominates the current semiconductor market due to the astonishing power of silicon electronic integration technology. In contrast to the dominance of silicon in electronics, photonics utilises a diversity of materials for emitting, guiding, modulating and detecting light. In the last ten years a big research effort was aimed to render Si an optical active material so that it can be turned from an electronic material to a photonic material. For some the future of Si-based photonic lays in 'hybrid' solutions, for others the utilisation of more photonic functions by silicon itself. During the last two years many breakthroughs in the field have appeared. In this paper we will review what we believe the most important: optical gain in silicon nanostructures.
机译:CMOS电路由于硅电子集成技术的令人惊力的功率主导了当前半导体市场。与硅中硅的优势相比,光子学利用多样性的用于发射,引导,调节和检测光的材料。在过去的十年中,大型研究旨在使Si是光学活性材料,使得它可以从电子材料转向光子材料。对于一些基于SI的光子奠定了“混合”解决方案的未来,对于其他用于通过硅本身利用更多的光子函数。在过去的两年里,这个领域的突破出现了。在本文中,我们将审查我们认为最重要的:硅纳米结构中的光学增益。

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