• 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
Author Affiliations
  • National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei 230029, China
  • show less
    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).

    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
    Download Citation