Acoustically-switchable nonlinear frequency conversion in gas-filled hollow-core photonic crystal fibers

被引:0
|
作者
Ri C.-S. [1 ]
Choe S. [1 ]
Im S.-J. [1 ]
Kim K.-D. [1 ]
Song K.-S. [1 ]
Pae J.-S. [1 ]
Ho K.-S. [1 ]
Yang D.-J. [2 ,3 ]
机构
[1] Department of Physics, Kim Il Sung University, Taesong District, Pyongyang
[2] Mathematics and Physics Department, North China Electric Power University, Beijing
[3] Beijing Computational Science Research Center, Beijing
来源
Optik | 2023年 / 293卷
关键词
Acoustic wave; Hollow-core photonic crystal fibers; Nonlinear optics; Phase matching;
D O I
10.1016/j.ijleo.2023.171414
中图分类号
学科分类号
摘要
We found that an acoustically-induced perturbation can support a different type of quasi-phase matching for nonlinear frequency conversions in gas-filled hollow-core photonic crystal fibers. A gas pressure grating, a periodic spatial modulation of gas pressure, which is reversibly constructed by the acoustically-induced perturbation, compensates a nonzero phase mismatch and enhances the nonlinear optical process. The field amplitude oscillates about the averaged field amplitude which lineally grows with distance. While group velocity walk-off is suppressed by manipulating the gas pressure inside the fiber, a nonzero wavevector mismatch is inevitable, which can be compensated by the acoustically-induced perturbation. The frequency conversion is switchable by turning on/off the acoustically-induced perturbation. We exemplarily consider third-harmonic generation in gas-filled hollow-core photonic crystal fibers, however the conception of acoustically-induced quasi-phase matching is applicable to other kinds of nonlinear optical processes in gas-filled structures such including four-wave mixing and sum frequency generation and it would provide a new route for nonlinear optics and acoustooptics. © 2023
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