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NTIS 바로가기한국광학회지 = Korean journal of optics and photonics, v.33 no.6, 2022년, pp.245 - 251
김영찬 (광주과학기술원 고등광기술연구소) , 류대건 (광주과학기술원 고등광기술연구소) , 노영철 (광주과학기술원 고등광기술연구소)
We have developed a multi-channel fiber laser for tiled laser beam combining and a laser output array system for multi-beam alignment. The fiber laser is a master oscillator power amplifier configuration that has a common seed, a preamplifier, and a 7-channel amplifier. The output power of each chan...
R. A. Motes, Introduction to High Power Fiber Lasers (Directed Energy Professional Society, NM, USA, 2009).
Z. Liu, X. Jin, R. Su, P. Ma, and P. Zhou, "Development status of high power fiber lasers and their coherent beam combination," Sci. China Inf. Sci. 62, 41301 (2019).
H. Jeong, K. H. Lee, J. Lee, D.-J. Kim, J. H. Lee, and M. Jo, "High-beam-quality 2-kW-class spectrally combined laser using narrow-linewidth ytterbium-doped polarization-maintaining fiber amplifiers," Korean J. Opt. Photonics 31, 218-222 (2020).
D. C. Jones, A. J. Turner, A. M. Scott, S. M. Stone, R. G. Clark, C. Stace, and C. D. Stacey, "A multi-channel phase locked fibre bundle laser," Proc. SPIE 7580, 75801V (2010).
T. Weyrauch, M. Vorontsov, J. Mangano, V. Ovchinnikov, D. Bricker, E. Polnau, and A. Rostov, "Deep turbulence effects mitigation with coherent combining of 21 laser beams over 7 km," Opt. Lett. 41, 840-843 (2016).
H. Chang, Q. Chang, J. Xi, T. Hou, R. Su, P. Ma, J. Wu, C. Li, M. Jiang, Y. Ma, and P. Zhou, "First experimental demonstration of coherent beam combining of more than 100 fiber lasers," Photonics Res. 8, 1943-1948 (2020).
L. A. Beresnev, R. A. Motes, K. J. Townes, P. Marple, K. Gurton, A. R. Valenzuela, C. Williamson, J. J. Liu, and C. Washer, "Design of a noncooled fiber collimator for compact, highefficiency fiber laser arrays," Appl. Opt. 56, B169-B178 (2017).
L. Beresnev, A. Flores, R. Holten, A. Valenzuela, A. Taliaferro, A. Schweinsberg, K. Gurton, D. Ligon, C. Williamson, and S. Bilyk, "Multi-kW, uncooled densely packed fiber array for laser beam combining," in Proc. 2019 IEEE Research and Applications of Photonics in Defense Conference-RAPID (Miramar Beach, FL, USA, Aug. 19-21, 2019), pp. 1-4.
Y. Kim, Y. Yun, H. Kim, H. Chang, J. Park, Y. Choe, J. Na, J. Yi, H. Kang, M. Yeo, K. Choi, Y. Noh, Y. Jeong, H. Lee, B. Yu, D. Yeom, and J. Jun, "3-channel tiled-aperture coherent-beam-combining system based on target-in-the-loop monitoring and SPGD algorithm," Korean J. Opt. Photonics 32, 1-8 (2021).
L. Daniault, M. Hanna, L. Lombard, Y. Zaouter, E. Mottay, D Goular, P. Bourdon, F. Druon, and P. Georges, "Coherent beam combining of two femtosecond fiber chirped-pulse amplifiers," Opt. Lett. 36, 621-623 (2011).
M. Muller, C. Aleshire, A. Klenke, E. Haddad, F. Legare, A. Tunnermann, and J. Limpert, "10.4 kW coherently combined ultrafast fiber laser," Opt. Lett. 45, 3083-3086 (2020).
I. Fsaifes, L. Daniault, S. Bellanger, M. Veinhard, J. Bourderionnet, C. Larat, E. Lallier, E. Durand, A. Bringnon, and J.-C. Chanteloup, "Coherent beam combining of 61 femtosecond fiber amplifiers," Opt. Express 28, 20152-20161 (2020).
M. A. Vorontsov, T. Weyrauch, L. A. Beresnev, G. W. Carhart, L. Liu, and K. Aschenbach, "Adaptive array of phase-locked fiber collimators: Analysis and experimental demonstration," IEEE J. Sel. Top. Quantum Electron. 15, 269-280 (2009).
D. Zhi, P. Ma, Y. Ma, X. Wang, P. Zhou, and L. Si, "Novel adaptive fiber-optics collimator for coherent beam combination," Opt. Express 22, 31520-31528 (2014).
D. Zhi, Y. Ma, R. Tao, P. Zhou, X. Wang, Z. Chen, and L. Si, "Highly efficient coherent conformal projection system based on adaptive fiber optics collimator array," Sci. Rep. 9, 2783 (2019).
C. Geng, W. Luo, Y. Tan, H. Liu, J. Mu, and X. Li, "Experimental demonstration of using divergence cost-function in SPGD algorithm for coherent beam combining with tip/tilt control," Opt. Express. 21, 25045-25055 (2013).
Z. M. Huang, C. L. Liu, J. F. Li, and D. Y. Zhang, "A high-speed, high-efficiency phase controller for coherent beam combining based on SPGD algorithm," Quantum Electron. 44, 301 (2014).
Z. Huang, X. Tang, D. Zhang, X. Wang, Q. Hu, J. Li, and C. Liu, "Coherent beam combination of ten fiber arrays via stochastic parallel gradient descent algorithm," J. Opt. Technol. 82, 16-20 (2015).
M. A. Vorontsov and V. P. Sivokon, "Stochastic parallelgradient-descent technique for high-resolution wave-front phase-distortion correction," J. Opt. Soc. Am. A 15, 2745-2758 (1998).
P. Zhou, Z. Liu, X. Wang, Y. Ma, H. Ma, X. Xu, and S. Guo, "Coherent beam combining of fiber amplifiers using stochastic parallel gradient descent algorithm and its application," IEEE J. Sel. Top. Quantum Electron. 15, 248-256 (2009).
C. Zeringue, I. Dajani, S. Naderi, G. T. Moore, and C. Robin, "A theoretical study of transient stimulated Brillouin scattering in optical fibers seeded with phase-modulated light," Opt. Express 20, 21196-21213 (2012).
V. R. Supradeepa, "Stimulated Brillouin scattering thresholds in optical fibers for lasers linewidth broadened with noise," Opt. Express 21, 4677-4687 (2013).
A. Flores, C. Robin, A. Lanari, and I. Dajani, "Pseudo-random binary sequence phase modulation for narrow linewidth, kilowatt, monolithic fiber amplifiers," Opt. Express 22, 17735- 17744 (2014).
C. Jun, M. Jung, W. Shin, B.-A. Yu, Y. S. Yoon, Y. Park, and K. Choi, "818 W Yb-doped amplifier with <7 GHz linewidth based on pseudo-random phase modulation in polarization-maintained all-fiber configuration," Laser Phys. Lett. 16, 015102 (2019).
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