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首页> 外文期刊>Nature Communications >Electrically tunable optical polarization rotation on a silicon chip using Berry's phase
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Electrically tunable optical polarization rotation on a silicon chip using Berry's phase

机译:使用贝里相位在硅芯片上进行电可调光偏振旋转

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摘要

The continued convergence of electronics and photonics on the chip scale can benefit from the voltage control of optical polarization for applications in communications, signal processing and sensing. It is challenging, however, to electrically manipulate the polarization state of light in planar optical waveguides. Here we introduce out-of-plane optical waveguides, allowing access to Berry's phase, a quantum-mechanical phenomenon of purely topological origin. As a result, electrically tunable optical polarization rotation on the chip scale is achieved. Devices fabricated in the silicon-on-insulator material platform are not limited to a single static polarization state. Rather, they can exhibit dynamic tuning of polarization from the fundamental transverse electric mode to the fundamental transverse magnetic mode. Electrical tuning of optical polarization over a 19 dB range of polarization extinction ratio is demonstrated with less than 1 dB of conversion loss at infrared wavelengths. Compact system architectures involving dynamic control of optical polarization in integrated circuits are envisioned.
机译:电子和光子在芯片规模上的持续融合可受益于通信,信号处理和传感应用中的光偏振电压控制。然而,在平面光波导中电操纵光的偏振态是具有挑战性的。在这里,我们介绍平面外光波导,允许访问Berry相,这是一种纯拓扑起源的量子力学现象。结果,实现了芯片级的电可调光偏振旋转。在绝缘体上硅材料平台中制造的器件不限于单个静态极化状态。而是,它们可以表现出从基本横向电模式到基本横向磁模式的极化动态调谐。证明了在消光比的19 dB范围内对光偏振进行电调谐,在红外波长下转换损耗小于1 dB。设想了涉及集成电路中光偏振的动态控制的紧凑系统架构。

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