28 December 2020 Cascaded-tapered silica photonic crystal fiber for supercontinuum generation
Yichi Zhang, Jinhui Yuan, Kuiru Wang, Haiyun Wang, Yujun Cheng, Chao Mei, Feng Xu, Xian Zhou, Binbin Yan, Xinzhu Sang, Chongxiu Yu
Author Affiliations +
Abstract

We propose the two-stage cascaded-tapered silica photonic crystal fiber (PCF) for the supercontinuum (SC) generation. The cascaded-tapered silica PCF is designed to have a spatial periodic structure. The physical scenarios of the spectral broadening due to the interaction between the structure-induced periodic dispersion and Kerr nonlinearity under different pulse widths and peak powers are investigated. It is found that when the pump pulses with width of <100  fs and peak power of not more than 10 kW are propagated in the cascaded-tapered silica PCF, the SC with good coherence can be generated. It is believed that the research results have potential applications in the nonlinear photonics and spectroscopy.

© 2020 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2020/$28.00 © 2020 SPIE
Yichi Zhang, Jinhui Yuan, Kuiru Wang, Haiyun Wang, Yujun Cheng, Chao Mei, Feng Xu, Xian Zhou, Binbin Yan, Xinzhu Sang, and Chongxiu Yu "Cascaded-tapered silica photonic crystal fiber for supercontinuum generation," Optical Engineering 59(12), 126107 (28 December 2020). https://doi.org/10.1117/1.OE.59.12.126107
Received: 22 June 2020; Accepted: 2 December 2020; Published: 28 December 2020
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CITATIONS
Cited by 2 scholarly publications.
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KEYWORDS
Silica

Dispersion

Picosecond phenomena

Photonic crystal fibers

Supercontinuum generation

Optical engineering

Scanning probe microscopy

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