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Design of an Efficient and a Compact Optical Pulse Compressor Using a Tapered Photonic Crystal Fiber

机译:使用锥形光子晶体纤维设计高效和紧凑的光学脉冲压缩机

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Ultrashort pulses (USPs) at wavelengths down to the communication window with a high repetition frequency range (GHz-THz) have found wide applications, especially, in biophotonic sensors, optical coherence tomography, materials processing, etc.. There are some desirable features that USPs need to satisfy such as being pedestal-free and transform-limited for their suitability in communication as well as non-communication based applications. However, it is very difficult to meet out these desirable characteristicseven with carefully configured laser system. Hence, pulse-compression techniques have been the ultimate solution for generating USPs, in recent times. Having realized the importance of generating USPs through pulse compression, we aim at designing a novel practicable pulse compressor using a tapered photonic crystal fiber (PCF) operating down to ultraviolet regime. The pulse propagation in a tapered PCF is governed by the nonlinear Schrdinger (NLS) type equation. We adopt the self-similar scaling analysis for generating USPs. Based on the analytical results, we model a tapered PCF such that the dispersion decreases exponentially while the nonlinearity increases exponentially along the propagation direction. Here, the required tapering is achieved by exponentially decreasing the diameter of the air hole as well as its pitch. We envisage that the proposed pulse compressor would turn out to be an excellent tool for generating high quality USPs down to ultraviolet regime, which, in turn, might be very much useful in bio-photonic related applications.
机译:在具有高重复频率范围(GHz-THz)的波长下的超短脉冲(USPS)已发现广泛的应用,特别是在生物光电传感器,光学相干断层扫描,材料处理等中。有一些理想的功能USPS需要满足,例如自由基座和转换限制,以便在通信中的适用性以及非通信的应用程序。然而,使用精心配置的激光系统非常困难地满足这些理想的特征。因此,脉冲压缩技术是最近产生USP的最终解决方案。实现了通过脉冲压缩产生USP的重要性,我们的目的是使用锥形光子晶体纤维(PCF)来设计一种新的切实可行脉冲压缩机,操作下来紫外线状态。锥形PCF中的脉冲传播由非线性施拉网(NLS)类型等式控制。我们采用自类似的缩放分析来生成USPS。基于分析结果,我们模拟锥形PCF,使得分散性呈指数逐渐减小,而非线性沿着传播方向呈指数增加。这里,通过指数地降低气孔的直径以及其间距来实现所需的逐渐变细。我们设想所提出的脉冲压缩机将成为一个优质的工具,用于产生高质量的USPS到紫外线状态,反过来可能在生物光子相关应用中非常有用。

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