Laser & Optoelectronics Progress, Volume. 61, Issue 3, 0319001(2024)
Influence of the Airy Pulse on Rogue Waves and its Regulation in a Supercontinuum (Invited)
[1] Bleotu P G, Wheeler J, Papadopoulos D et al. Spectral broadening for multi-Joule pulse compression in the APOLLON Long Focal Area facility[J]. High Power Laser Science and Engineering, 10, e9(2022).
[2] Yang L Y, Yang Y K, Zhang B et al. Record power and efficient mid-infrared supercontinuum generation in Germania fiber with high stability[J]. High Power Laser Science and Engineering, 10, e36(2022).
[3] Dai S X, Wang M, Wang Y Y et al. Review of mid-infrared supercontinuum spectrum generation based on chalcogenide glass fibers[J]. Laser & Optoelectronics Progress, 57, 071603(2020).
[4] Smirnov S V, Ania-Castañón J D, Kobtsev S, Alfano R R et al. Supercontinuum in telecom applications[M]. The Supercontinuum laser source: the ultimate white light, 397-432(2022).
[5] Ji X C, Mojahed D, Okawachi Y et al. Millimeter-scale chip-based supercontinuum generation for optical coherence tomography[J]. Science Advances, 7, eabg8869(2021).
[6] Poudel C, Kaminski C F. Supercontinuum radiation in fluorescence microscopy and biomedical imaging applications[J]. Journal of the Optical Society of America B, 36, A139-A153(2019).
[7] Li Q, Duan X Q. Effect of a weak CW trigger on optical rogue waves in the femtosecond supercontinuum generation[J]. Optics Express, 23, 16364-16371(2015).
[8] Duan X Q, Li Q. Control of optical rogue waves in the femtosecond supercontinuum generation using a weak continuous wave trigger[C](2016).
[9] Zhao S L, Yang H, Xiao Y Z. Effects of a seed pulse on rogue-wave formation for midinfrared supercontinuum generation in chalcogenide photonic crystal fibers[J]. Physical Review A, 98, 043817(2018).
[10] Liu S, Han X, Lü J Q et al. Suppression of optical rogue waves by dispersion oscillating fiber in the mid-infrared supercontinuum[J]. Frontiers in Physics, 9, 761513(2021).
[11] Sysoliatin A A, Gochelashvili K S, Konyukhov A et al. All-optical fiber soliton processing using dispersion oscillating fiber[J]. Laser Physics Letters, 17, 065105(2020).
[12] Huang C, Nakkeeran K, Li Q. Control of long pulse pumped supercontinuum generation using weak trigger signal[J]. Journal of Lightwave Technology, 38, 1506-1512(2020).
[13] Li Q, Li F, Wong K K Y et al. Investigating the influence of a weak continuous-wave-trigger on picosecond supercontinuum generation[J]. Optics Express, 19, 13757-13769(2011).
[14] Zhao S L, Yang H, Chen N S et al. Controlled generation of high-intensity optical rogue waves by induced modulation instability[J]. Scientific Reports, 7, 39926(2017).
[15] Baumgartl J, Mazilu M, Dholakia K. Optically mediated particle clearing using Airy wavepackets[J]. Nature Photonics, 2, 675-678(2008).
[16] Zuo M W, Shi Z W, Li H G. Interaction of two Airy-gaussian beams in nonlocal nonlinear medium with defected lattices[J]. Laser & Optoelectronics Progress, 57, 051901(2020).
[17] Li Y, Chu X C, Tang H L et al. Propagation and evolution properties of finite energy airy beams[J]. Laser & Optoelectronics Progress, 59, 1326001(2022).
[18] Zhang P, Prakash J, Zhang Z et al. Trapping and guiding microparticles with morphing autofocusing Airy beams[J]. Optics Letters, 36, 2883-2885(2011).
[19] Jia S, Vaughan J C, Zhuang X. Isotropic 3D super-resolution imaging with a self-bending point spread function[J]. Nature Photonics, 8, 302-306(2014).
[20] Mathis A, Courvoisier F, Froehly L et al. Micromachining along a curve: Femtosecond laser micromachining of curved profiles in diamond and silicon using accelerating beams[J]. Applied Physics Letters, 101, 071110(2012).
[21] Peng H Y, Li Y, Peng J et al. Evolution of Airy-Gaussian pulses in photonic crystal fiber with two zero-dispersion wavelengths[J]. Optik, 250, 168324(2022).
[22] Li Y, Peng J, Tan C et al. Numerical investigation on the dynamic propagation of finite-energy Airy pulses in photonic crystal fibre[J]. Journal of Modern Optics, 67, 445-453(2020).
[23] Khalatpour A, Paulsen A K, Deimert C et al. High-power portable terahertz laser systems[J]. Nature Photonics, 15, 16-20(2021).
[24] Benton D, Sugden K, Zandi M. Coherence imaging for laser detection[J]. Proceedings of SPIE, 11537, 115370K(2020).
[25] Zhu S D, Zhang H, Ma X H et al. Design of fiber coupling system for high brightness semiconductor laser pump source[J]. Laser & Optoelectronics Progress, 60, 1522002(2023).
[26] Abdelaziz I, AbdelMalek F, Haxha S et al. Photonic crystal fiber with an ultrahigh birefringence and flattened dispersion by using genetic algorithms[J]. Journal of Lightwave Technology, 31, 343-348(2013).
[27] Hameed M F O, Mahmoud K R, Obayya S S A. Metaheuristic algorithms for dispersion optimization of photonic crystal fibers[J]. Optical and Quantum Electronics, 48, 127(2016).
[28] Goodman J, King M, Dolier E J et al. Optimization and control of synchrotron emission in ultraintense laser–solid interactions using machine learning[J]. High Power Laser Science and Engineering, 11, e34(2023).
[29] Wu F Y, Yang X H, Ma Y Y et al. Machine-learning guided optimization of laser pulses for direct-drive implosions[J]. High Power Laser Science and Engineering, 10, e12(2022).
[30] Arteaga-Sierra F, Milián C, Torres-Gómez I et al. Optimization for maximum Raman frequency conversion in supercontinuum sources using genetic algorithms[J]. Revista Mexicana De Física, 63, 111-116(2017).
[31] Dashtban Z, Salehi M R, Abiri E. Supercontinuum generation in near-and mid-infrared spectral region using highly nonlinear silicon-core photonic crystal fiber for sensing applications[J]. Photonics and Nanostructures - Fundamentals and Applications, 46, 100942(2021).
[32] Liu S L, Sang J B, Zhao L M et al. The improvement on niche genetic algorithm and its application on parameters identification for rubber material[J]. Journal of Hebei University of Technology, 51, 21-26, 41(2022).
[33] Guan Y M, Xi Y P, Cui J et al. Optimization of the hinge position for driving device of support rotating arm based on PSO[J]. Journal of Hebei University of Technology, 47, 32-38(2018).
[34] Huang J W, Zeng J, Bai Y F et al. Layout optimization of fiber Bragg grating strain sensor network based on modified artificial fish swarm algorithm[J]. Optical Fiber Technology, 65, 102583(2021).
[35] Zhao S, Yang H, Xiao Y. Effects of a seed pulse on rogue-wave formation for midinfrared supercontinuum generation in chalcogenide photonic crystal fibers[J]. Physical Review A, 98, 043817(2018).
[36] Genty G, Dudley J M, Eggleton B J. Modulation control and spectral shaping of optical fiber supercontinuum generation in the picosecond regime[J]. Applied Physics B, 94, 187-194(2009).
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Shuo Liu, Congying Yin, Qun Zu, Yuhang Dong, Qi Li, Saili Zhao. Influence of the Airy Pulse on Rogue Waves and its Regulation in a Supercontinuum (Invited)[J]. Laser & Optoelectronics Progress, 2024, 61(3): 0319001
Category: Nonlinear Optics
Received: Aug. 28, 2023
Accepted: Oct. 16, 2023
Published Online: Mar. 7, 2024
The Author Email: Shuo Liu (liushuo@hebut.edu.cn)
CSTR:32186.14.LOP231984