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Silicon-based microring resonators for multi-solitons generation for THz communication

机译:基于硅的微环谐振器,用于THz通信的多孤子生成

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Silicon-based microring resonator (SMRR) is required to select the specific channels in a wavelength division multiplexing systems. SMRRs also have applications in optical filters, data storages and bio-sensors, due to their significant advantages such as versatile wavelength-selective elements, compact size, fast operation and compatibility with current optical infrastructure, as well as being able to divert groups of inputs light and synthesize a wide class of filter functions. Here, we proposed a system for multiple mode-locked soliton generation, where the photonic circuits simulator PICWave software made by photon design based on the time-domain travelling wave method is used for modeling passive and active photonic circuits. A mode-locked spectrum possessing a spacing of 30 ps and a full width at half maximum (FWHM) of 10 ps was generated and input into the ring system. The subsequent multiple mode-locked soliton pulses had a free spectral range of 25 GHz and FWHM of 630 MHz, which corresponded to 0.2 nm and 5 pm respectively, with a 40 ps pulse duration and 200 GHz repetition. The obtained finesse was approximately 39.7, and the Q-factor was approximately 3 × 10~5.
机译:需要硅基微环谐振器(SMRR)来选择波分复用系统中的特定通道。由于SMRR具有显着的优势,例如通用的波长选择元件,紧凑的尺寸,快速的操作和与当前光学基础设施的兼容性,并且能够转移输入组,因此它们还可以应用于光学滤波器,数据存储和生物传感器。点亮并合成各种过滤器功能。在这里,我们提出了一种多锁模孤子产生的系统,其中使用基于时域行波方法的光子设计制造的光子电路模拟器PICWave软件,对无源和有源光子电路进行建模。产生了间隔为30 ps,半峰全宽(FWHM)为10 ps的锁模频谱,并将其输入到环形系统中。随后的多个锁模孤子脉冲具有25 GHz的自由光谱范围和630 MHz的FWHM,分别对应于0.2 nm和5 pm,脉冲持续时间为40 ps,重复频率为200 GHz。所获得的精细度约为39.7,Q因子约为3×10〜5。

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