| Literature DB >> 36081158 |
Jian Yang1, Yingning Wang1, Yuxi Fang1, Wenpu Geng1, Wenqian Zhao1, Changjing Bao2, Yongxiong Ren2, Zhi Wang1, Yange Liu1, Zhongqi Pan3, Yang Yue4.
Abstract
In this paper, we design a silica-cladded Germania-doped ring-core fiber (RCF) that supports orbital angular momentum (OAM) modes. By optimizing the fiber structure parameters, the RCF possesses a near-zero flat dispersion with a total variation of <±30 ps/nm/km over 1770 nm bandwidth from 1040 to 2810 nm for the OAM1,1 mode. A beyond-two-octave supercontinuum spectrum of the OAM1,1 mode is generated numerically by launching a 40 fs 120 kW pulse train centered at 1400 nm into a 12 cm long designed 50 mol% Ge-doped fiber, which covers 2130 nm bandwidth from 630 nm to 2760 nm at -40 dB of power level. This design can serve as an efficient way to extend the spectral coverage of beams carrying OAM modes for various applications.Entities:
Keywords: nonlinear optics; orbital angular momentum; supercontinuum
Year: 2022 PMID: 36081158 PMCID: PMC9459936 DOI: 10.3390/s22176699
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.847
Figure 1(a) Schematic diagram of SC generation; (b) Cross-section of the Ge-doped silica fiber.
Figure 2Dispersion-wavelength curves at different Ge-doping concentrations.
Figure 3Dispersion-wavelength curves for different (a) ring width (r) and (b) fiber inner SiO2 radius (r1).
Figure 4Normalized intensity and phase distributions at different wavelengths of OAM1,1 mode supported in the designed RCF.
Figure 5(a) Loss, (b) nonlinear coefficient and effective mode field area (A) of the RCF with the optimized design.
Figure 6Influence of the initial pulse parameters on SC generation of OAM1,1 after a 12 cm designed Ge-doped RCF for different (a) λ0 (P0 = 120 kW, T = 70 fs); (b) P0 (λ0 = 1400 nm, T = 70 fs); (c) T (λ0 = 1400 nm, P0 = 120 kW).
Figure 7Broadening of the output spectra obtained at different lengths of the designed Ge-doped silica RCF.
Figure 8(a) Spectral and (b) temporal evolutions of the pump pulses with OAM1,1 mode propagating along the 12 cm optimized RCF.