TY - JOUR
T1 - 类视网膜阵列结构的光纤相控阵方法研究
AU - Liu, Weijian
AU - Cao, Jie
AU - Hao, Qun
AU - Zhang, Jiali
AU - Yang, Jiuzhang
AU - Tang, Mingyuan
AU - Cheng, Yang
N1 - Publisher Copyright:
Copyright ©2021 Journal of Applied Optics. All rights reserved.
PY - 2021/7
Y1 - 2021/7
N2 - In an optical fiber phased array, the array layout of the outgoing beam has a crucial influence on the coherent combination performance of high-power lasers. Aiming at the problem of low energy synthesis efficiency caused by the difficulty of breaking through half the wavelength of the existing optical fiber phased array element spacing, a retina-like multi-ring optical fiber phase-control method was proposed, and a circularly symmetrical distribution structure was designed. Keeping the positions of the central array element and the outermost ring array element unchanged, a particle swarm algorithm was used to optimize the spacing of the remaining elements between the rings to obtain the best far-field coherent synthesis performance. The simulation results show that, compared with the traditional optical fiber phase-control method, the energy concentration of the proposed array layout is increased from 0.562 to 0.921, and the peak sidelobe level is compressed from 0.212 to 0.043.
AB - In an optical fiber phased array, the array layout of the outgoing beam has a crucial influence on the coherent combination performance of high-power lasers. Aiming at the problem of low energy synthesis efficiency caused by the difficulty of breaking through half the wavelength of the existing optical fiber phased array element spacing, a retina-like multi-ring optical fiber phase-control method was proposed, and a circularly symmetrical distribution structure was designed. Keeping the positions of the central array element and the outermost ring array element unchanged, a particle swarm algorithm was used to optimize the spacing of the remaining elements between the rings to obtain the best far-field coherent synthesis performance. The simulation results show that, compared with the traditional optical fiber phase-control method, the energy concentration of the proposed array layout is increased from 0.562 to 0.921, and the peak sidelobe level is compressed from 0.212 to 0.043.
KW - Coherent synthesis
KW - Optical fiber phased array
KW - Particle swarm optimization algorithm
KW - Retina-like structure
UR - http://www.scopus.com/inward/record.url?scp=85111586369&partnerID=8YFLogxK
U2 - 10.5768/JAO202142.0408001
DO - 10.5768/JAO202142.0408001
M3 - 文章
AN - SCOPUS:85111586369
SN - 1002-2082
VL - 42
SP - 749
EP - 754
JO - Journal of Applied Optics
JF - Journal of Applied Optics
IS - 4
ER -