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All-plasmonic Mach-Zehnder modulator enabling optical high-speed communication at the microscale

机译:全等离子体马赫曾德尔调制器,可实现微米级光学高速通信

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摘要

Optical modulators encode electrical signals to the optical domain and thus constitute a key element in high-capacity communication links(1,2). Ideally, they should feature operation at the highest speed with the least power consumption on the smallest footprint, and at low cost(3). Unfortunately, current technologies fall short of these criteria(4). Recently, plasmonics has emerged as a solution offering compact and fast devices(5-7). Yet, practical implementations have turned out to be rather elusive. Here, we introduce a 70 GHz all-plasmonic Mach-Zehnder modulator that fits into a silicon waveguide of 10 mu m length. This dramatic reduction in size by more than two orders of magnitude compared with photonic Mach-Zehnder modulators results in a low energy consumption of 25 fJ per bit up to the highest speeds. The technology suggests a cheap co-integration with electronics.
机译:光调制器将电信号编码到光域,从而构成大容量通信链路中的关键元素(1,2)。理想情况下,它们应以最快的速度运行,在最小的占位面积上以最低的功耗实现低成本(3)。不幸的是,当前的技术未能达到这些标准(4)。最近,等离子技术已经成为一种提供紧凑,快速设备的解决方案(5-7)。然而,事实证明,实际的实现还很困难。在这里,我们介绍了一个70 GHz全等离子体马赫曾德尔调制器,该调制器适合10μm长的硅波导。与光子Mach-Zehnder调制器相比,这种尺寸的显着减小超过了两个数量级,从而在最高速度下的能耗仅为每位25 fJ。该技术表明与电子产品的廉价集成。

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