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Subwavelength grating enabled on-chip ultra-compact optical true time delay line

机译:亚波长光栅使能片上超紧凑型光学实时延时线

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摘要

An optical true time delay line (OTTDL) is a basic photonic building block that enables many microwave photonic and optical processing operations. The conventional design for an integrated OTTDL that is based on spatial diversity uses a length-variable waveguide array to create the optical time delays, which can introduce complexities in the integrated circuit design. Here we report the first ever demonstration of an integrated index-variable OTTDL that exploits spatial diversity in an equal length waveguide array. The approach uses subwavelength grating waveguides in silicon-on-insulator (SOI), which enables the realization of OTTDLs having a simple geometry and that occupy a compact chip area. Moreover, compared to conventional wavelength-variable delay lines with a few THz operation bandwidth, our index-variable OTTDL has an extremely broad operation bandwidth practically exceeding several tens of THz, which supports operation for various input optical signals with broad ranges of central wavelength and bandwidth.
机译:光学真实时间延迟线(OTTDL)是基本的光子构造块,可实现许多微波光子和光学处理操作。基于空间分集的集成OTTDL的常规设计使用长度可变的波导阵列来创建光学时间延迟,这会给集成电路设计带来复杂性。在这里,我们报告了集成索引变量OTTDL的首次展示,该索引利用了等长波导阵列中的空间分集。该方法使用绝缘体上硅(SOI)中的亚波长光栅波导,这使得能够实现具有简单几何形状并占用紧凑芯片面积的OTTDL。此外,与具有几个THz工作带宽的常规波长可变延迟线相比,我们的折射率可变OTTDL具有非常宽的工作带宽,实际上超过了几十个THz,这支持对中心波长和带宽。

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