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全正色散光子晶体光纤中产生相干倍频程近红外和可见超连续谱

Coherent octave spanning near-infrared and visible supercontinuum generation in all-normal dispersion photonic crystal fibers.

作者信息

Heidt Alexander M, Hartung Alexander, Bosman Gurthwin W, Krok Patrizia, Rohwer Erich G, Schwoerer Heinrich, Bartelt Hartmut

机构信息

Laser Research Institute, Physics Department, University of Stellenbosch, Private Bag X1, Matieland 7604, South Africa.

出版信息

Opt Express. 2011 Feb 14;19(4):3775-87. doi: 10.1364/OE.19.003775.

Abstract

We present the first detailed demonstrations of octave-spanning SC generation in all-normal dispersion photonic crystal fibers (ANDi PCF) in the visible and near-infrared spectral regions. The resulting spectral profiles are extremely flat without significant fine structure and with excellent stability and coherence properties. The key benefit of SC generation in ANDi PCF is the conservation of a single ultrashort pulse in the time domain with smooth and recompressible phase distribution. For the first time we confirm the exceptional temporal properties of the generated SC pulses experimentally and demonstrate their applicability in ultrafast transient absorption spectroscopy. The experimental results are in excellent agreement with numerical simulations, which are used to illustrate the SC generation dynamics by self-phase modulation and optical wave breaking. To our knowledge, we present the broadest spectra generated in the normal dispersion regime of an optical fiber.

摘要

我们首次详细展示了在可见和近红外光谱区域的全正色散光子晶体光纤(ANDi PCF)中产生倍频程超连续谱(SC)的过程。所得光谱轮廓极其平坦,没有明显的精细结构,并且具有出色的稳定性和相干特性。在ANDi PCF中产生SC的关键优势在于,在时域中能保留单个超短脉冲,且具有平滑且可再压缩的相位分布。我们首次通过实验证实了所产生的SC脉冲具有卓越的时间特性,并展示了它们在超快瞬态吸收光谱学中的适用性。实验结果与数值模拟结果高度吻合,数值模拟用于通过自相位调制和光波破碎来说明SC的产生动力学。据我们所知,我们展示了在光纤正常色散区域产生的最宽光谱。

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