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All-Optical Modulation in a Silicon Waveguide Based on a Single-Photon Process

机译:基于单光子过程的硅波导中的全光调制

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摘要

All-optical, low-power modulation is a major goal in photonics. Because of their high mode-field concentration and ease of manufacturing, nanoscale silicon waveguides offer an intriguing platform for photonics. So far, all-optical modulators built with silicon photonic circuits have relied on either two-photon absorption or the Kerr effect. Both effects are weak in silicon, and require extremely high (~5 W) peak optical power levels to achieve modulation. Here, we describe an all-optical Mach-Zehnder modulator based on a single-photon absorption (SPA) process, fabricated entirely in silicon. Our SPA modulator is based on a process by which a single photon at 1.55 mum is absorbed and an apparently free-carrier-mediated process causes an index shift in silicon, even though the photon energy does not exceed that of silicon's bandgap. We demonstrate all-optical modulation with a gate response of 1deg/mW at 0.5 Gb/s. This is over an order of magnitude more responsive than typical previously demonstrated devices. Even without resonant enhancement, further engineering may enable all optical modulation with less than 10 mW of gate power required for complete extinction, and speeds of 5 Gb/s or higher.
机译:全光,低功率调制是光子学的主要目标。由于其高的模式场集中度和易于制造,纳米级硅波导为光子学提供了一个有趣的平台。到目前为止,使用硅光子电路构建的全光调制器依赖于双光子吸收或Kerr效应。两种效应在硅中都很弱,并且需要极高的(〜5 W)峰值光功率水平才能实现调制。在这里,我们描述了一种基于单光子吸收(SPA)工艺的全光学Mach-Zehnder调制器,该调制器完全由硅制成。我们的SPA调制器基于以下过程:吸收1.55微米的单个光子,并且显然由自由载流子介导的过程会导致硅的折射率偏移,即使光子能量不超过硅的带隙能量。我们演示了在0.5 Gb / s时具有1deg / mW的门响应的全光调制。与典型的先前展示的设备相比,它的响应速度提高了一个数量级。即使没有共振增强,进一步的工程设计也可以使所有光调制具有完全灭绝所需的小于10 mW的栅极功率以及5 Gb / s或更高的速度。

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