• High Power Laser and Particle Beams
  • Vol. 33, Issue 9, 094002 (2021)
Cheng Li, Wenxing Wang, Weiwei Li, Haoran Zhang..., Shimin Jiang, Panyun Gao, Zhigang He* and Shancai Zhang|Show fewer author(s)
Author Affiliations
  • National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei 230029, China
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    DOI: 10.11884/HPLPB202133.210091 Cite this Article
    Cheng Li, Wenxing Wang, Weiwei Li, Haoran Zhang, Shimin Jiang, Panyun Gao, Zhigang He, Shancai Zhang. Drive laser shaping and transport system for photocathode RF gun[J]. High Power Laser and Particle Beams, 2021, 33(9): 094002 Copy Citation Text show less
    References

    [1] Akre R, Dowell D, Emma P, et al. Commissioning the linac coherent light source injector[J]. Physical Review Special Topics-Accelerators and Beams, 11, 030703(2008).

    [2] Zhu Pengfei, Zhu Y, Hidaka Y, et al. Femtosecond time-resolved MeV electron diffraction[J]. New Journal of Physics, 17, 063004(2015).

    [3] Xiang D, Fu F, Zhang J, et al. Accelerator-based single-shot ultrafast transmission electron microscope with picosecond temporal resolution and nanometer spatial resolution[J]. Nuclear Instruments and Methods in Physics Research Section A:Accelerators, Spectrometers, Detectors and Associated Equipment, 759, 74-82(2014).

    [4] Yang Jinfeng, Kondoh T, Kozawa T, et al. Pulse radiolysis based on a femtosecond electron beam and a femtosecond laser light with double-pulse injection technique[J]. Radiation Physics and Chemistry, 75, 1034-1040(2006).

    [5] Chen Han, Yan Lixin, Tian Qili, et al. Commissioning the photoinjector of a gamma-ray light source[J]. Physical Review Accelerators and Beams, 22, 053403(2019).

    [6] Kim K J. RF and space-charge effects in laser-driven RF electron guns[J]. Nuclear Instruments and Methods in Physics Research Section A:Accelerators, Spectrometers, Detectors and Associated Equipment, 275, 201-218(1989).

    [7] Serafini L, Rosenzweig J B. Envelope analysis of intense relativistic quasilaminar beams in rf photoinjectors: mA theory of emittance compensation[J]. Physical Review E, 55, 7565-7590(1997).

    [8] Schwarz J, Rambo P K, Smith I C, et al. Simple temporal pulse shaping using two Pockels cells[J]. Optical Engineering, 44, 094203(2005).

    [9] Sharma A K, Patidar R K, Raghuramaiah M, et al. Simple electro-optic technique to generate temporally flat-top laser pulses[J]. Optics Communications, 284, 4596-4600(2011).

    [10] Skeldon M D. Optical pulse-shaping system based on an electro-optic modulator driven by an aperture-coupled-stripline electrical-waveform generator[J]. Journal of the Optical Society of America B, 19, 2423-2426(2002).

    [11] Field J J, Durfee III C G, Squier J A, et al. Quartic-phase-limited grism-based ultrashort pulse shaper[J]. Optics Letters, 32, 3101-3103(2007).

    [12] Weiner A M. Femtosecond pulse shaping using spatial light modulators[J]. Review of Scientific Instruments, 71, 1929-1960(2000).

    [13] Weiner A M. Ultrafast optical pulse shaping: a tutorial review[J]. Optics Communications, 284, 3669-3692(2011).

    [14] Loos H, Dowell D, Gilevich S, et al. Tempal Ebeam shaping in an Sb accelerat[C]Proceedings of the 2005 Particle Accelerat Conference. 2005: 642644.

    [15] Vicario C, Ghigo A, Cialdi S, et al. Laser tempal pulse shaping experiment f SPARC photoinject[R]. CAREConf04030PHIN, 2004.

    [16] Park Y, Asghari M H, Ahn T J, et al. Transform-limited picosecond pulse shaping based on temporal coherence synthesization[J]. Optics Express, 15, 9584-9599(2007).

    [17] Wang X T, Feng L, Lan T, et al. Drive laser tempal shaping techniques f Shanghai soft Xray free electron laser[C]39th International Free Electron Laser Conference. 2019: 466468.

    [18] Sharma A K, Tsang T, Rao T. Theoretical and experimental study of passive spatiotemporal shaping of picosecond laser pulses[J]. Physical Review Special Topics-Accelerators and Beams, 12, 033501(2009).

    [19] Wang Dong, Yan Lixin, Huang Wenhui. UV Pulse shaping with αBBO crystals f the photocathode RF gun[C]Proceedings of the 7th International Particle Accelerat Conference. 2016: 40794081.

    [20] Laskin A, Laskin V. Imaging techniques with refractive beam shaping optics[C]Proceedings of SPIE 8490, Laser Beam Shaping XIII. 2012: 84900J.

    [21] Laskin A, Laskin V. Beam shaping in highpower laser systems with using refractive beam shapers[C]Proceedings of SPIE 8433, Laser Sources Applications. 2012: 84330N.

    [22] Halavanau A, Ha G, Qiang G, et al. Microlens array laser transverse shaping technique f photoemission electron source[DBOL]. arXiv preprint arXiv: 1609.01661, 2016.

    [23] Jin Yuhua, Hassan A, Jiang Yijian. Freeform microlens array homogenizer for excimer laser beam shaping[J]. Optics Express, 24, 24846-24858(2016).

    [24] Tomizawa H, Dewa H, Taniuchi T, et al. Adaptive 3D UVlaser pulse shaping system to minimize emittance f photocathode RF gun new laser incidence system[C]Proceedings of FEL. 2007: 298305.

    [25] Gross M, Qian H J, Boonpornprasert P, et al. Emittance reduction of RF photoinjector generated electron beams by transverse laser beam shaping[J]. Journal of Physics:Conference Series, 1350, 012046(2019).

    [26] Zhou Feng, Brachmann A, Emma P, et al. Impact of the spatial laser distribution on photocathode gun operation[J]. Physical Review Special Topics-Accelerators and Beams, 15, 090701(2012).

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    [1] Yingtong Shi, Hang Xu, Jinqiang Xu, Senlin Huang. Research progress on high-brightness electron source drive laser system[J]. High Power Laser and Particle Beams, 2025, 37(2): 021001

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    Cheng Li, Wenxing Wang, Weiwei Li, Haoran Zhang, Shimin Jiang, Panyun Gao, Zhigang He, Shancai Zhang. Drive laser shaping and transport system for photocathode RF gun[J]. High Power Laser and Particle Beams, 2021, 33(9): 094002
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