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Time derivatives via interconnected waveguides
DOI:10.1038/s41598-023-40046-3.png)
摘要
En 中文
Electromagnetic wave-based analogue computing has become an interesting computing paradigm demonstrating the potential for high-throughput, low power, and parallel operations. In this work, we propose a technique for the calculation of derivatives of temporal signals by exploiting transmission line techniques. We consider multiple interconnected waveguides (with some of them being closed-ended stubs) forming junctions. The transmission coefficient of the proposed structure is then tailored by controlling the length and number of stubs at the junction, such that the differentiation operation is applied directly onto the envelope of an incident signal sinusoidally modulated in the time domain. The physics behind the proposed structure is explained in detail and a full theoretical description of this operation is presented, demonstrating how this technique can be used to calculate higher order or even fractional temporal derivatives. We envision that these results may enable the development of further time domain wave-based analogue processors by exploiting waveguide junctions, opening new opportunities for wave-based single operators and systems.
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期刊
IF:
3.9
论文数:
28.1W
被引数:
83.5W
机构
引用论文
Observation of temporal reflection and broadband frequency translation at photonic time interfaces光子时间界面的时间反射和宽带频率平移的观测
NATURE PHYSICS
IF18.4

