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Tandem Mach Zehnder Directional Coupler Design and Simulation on Silicon Platform for Optical Coherence Tomography Applications

机译:用于光学相干层析成像应用的硅平台串联Mach Zehnder定向耦合器设计和仿真

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摘要

We design and compare the splitting ratio wavelength flatness of directional coupler (DC), Mach-Zehnder directional coupler (MZDC), and tandem MZDC. All coupler responses are analyzed, and tandem MZDC performance is the best in the wavelength insensitivity compared with the other two. An MZDC with any coupling ratio could be utilized to match the maximum flatness in a 40-nm wavelength range. To extend a broad flatness range, the tandem MZDC is proposed and still follows the Mach Zehnder structure taking two MZDCs as couplers connected through a decoupled region. Unlike DC, MZDC with the flat wavelength response has a non-linear output phase. Hence, using two wavelength-insensitive MZDCs as the coupling function in a tandem MZDC could demonstrate a more extensive decoupled phase term to maximize the flat wavelength response. The tandem MZDC theoretically demonstrates the splitting ratio with 100-nm flatness in the wavelength range from 1250 nm to 1350 nm. Finally, a point spread function through the tandem MZDC shows a 24-dB signal-to-noise ratio improvement in optical coherence tomography applications.
机译:我们设计并比较了定向耦合器(DC),Mach-Zehnder定向耦合器(MZDC)和串联MZDC的分光比波长平坦度。分析了所有耦合器的响应,与其他两个相比,串联MZDC在波长不敏感方面的性能最佳。具有任何耦合比的MZDC均可用于匹配40 nm波长范围内的最大平坦度。为了扩展宽的平坦度范围,提出了串联MZDC并仍然遵循Mach Zehnder结构,将两个MZDC作为耦合器,通过去耦区域进行连接。与DC不同,具有平坦波长响应的MZDC具有非线性输出相位。因此,在串联MZDC中使用两个对波长不敏感的MZDC作为耦合函数可以证明更广泛的去耦相位项可以最大化平坦波长响应。理论上,串联MZDC在1250 nm至1350 nm的波长范围内具有100 nm平坦度的分光比。最后,通过串联MZDC的点扩展函数在光学相干层析成像应用中显示出24 dB的信噪比改善。

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