High Power Laser Science and Engineering, 2019, 7 (2): 02000e33, Published Online: Jun. 5, 2019   

Comprehensive investigation on producing high-power orbital angular momentum beams by coherent combining technology Download: 665次

Author Affiliations
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
2 Hypervelocity Aerodynamics Institute, China Aerodynamics Research and Development Center, Mianyang 621000, China
Figures & Tables

Fig. 1. Schematics of (a) the general OAM beam generation method and (b) the novel OAM beam generation system using the beam array CBC technique.

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Fig. 2. Schematic of the input array beams.

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Fig. 3. Intensity distributions and phase patterns of the optical near-field and far-field with different topological charges from 1 to 4.

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Fig. 4. Experimental setup of the high-power vortex beam generation system using the array beams CBC technique. (SL: seed laser; PA: pre-amplifier; FS: fiber splitter; FPM: fiber phase modulator; FA: fiber amplifier; MFA: mode field adaptor; HRM: high-reflectivity mirror; SLM: spatial light modulator; BSP: beam splitter prism; $\unicode[STIX]{x2460}$: high-power beam array with OAM; $\unicode[STIX]{x2461}$: low-power sampling beam array; $\unicode[STIX]{x2462}$: shrinking beam array; $\unicode[STIX]{x2463}$: beam array incident on SLM; $\unicode[STIX]{x2464}$: beam array without SLM phase modulation; $\unicode[STIX]{x2465}$: beam array with SLM phase modulation; FL: focus lens; PD: photon detector; CCD: charge coupled device; FPGA: field programmable gate array.)

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Fig. 5. Normalized voltage values detected by the PD and corresponding spectral densities of the phase noise power. (a) Time-dependent normalized voltages. (b) Corresponding spectral densities.

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Fig. 6. Long-exposure beam patterns in different situations (see Visualization for dynamic experimental recording).

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Fig. 7. (a) Experimental setup and (b)–(g) interference results of the OAM measurement. (b) Intensity and phase distributions of beams $\unicode[STIX]{x2464}$ and $\unicode[STIX]{x2465}$ with the number of the OAM set to $\ell =+1$; (c), (d) corresponding interference patterns of the theoretical and experimental results. (e), (g) Results for the case $\ell =-1$.

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Dong Zhi, Tianyue Hou, Pengfei Ma, Yanxing Ma, Pu Zhou, Rumao Tao, Xiaolin Wang, Lei Si. Comprehensive investigation on producing high-power orbital angular momentum beams by coherent combining technology[J]. High Power Laser Science and Engineering, 2019, 7(2): 02000e33.

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