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电子束时间聚焦和时间准直系统理论研究 被引量:3

Theoretical Research of Time Focus and Time Collimation System for Electron Bunch
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摘要 为了补偿条纹变像管阴极和栅极之间的电子渡越时间弥散,提出了电子柬时间聚焦和时间准直系统。系统中,时间聚焦器用来压缩补偿电子束团在加速过程中产生的时间宽度展宽,压缩补偿后的电子束团再通过时间准直器,时间准直器用来使输出的电子具有相同的能量,这样电子束团在后面的传输过程中就不会产生新的时间弥散。采用蒙特卡罗方法和有限差分法对系统进行了理论模拟。模拟结果表明,500fs的电子脉冲经过时间聚焦器作用后,时间宽度变为131fs,时间压缩比为3.8:1,此后由于时间准直器的作用,电子脉冲宽度保持在131fs左右,时间准直性为16.8%。 In order to compensate the time dispersion between photocathode and anode in the streak tube, a time focus and time collimation system for electron bunch is presented. The time focus system is used to compensate the time dispersion in the process of accelerating. Then, the compensated electron pulse traverses the time collimation system. The energies of the electrons are equal as they emerge from the time collimation system. Therefore, the pulse width of the electron bunch is invariable in the latter transmission process. The system is simulated by using the Monte Carlo method and the finite difference method. The electron pulse with width of 500 fs is generated at the photo-cathode. The width of the electron pulse is shortened to 131 fs by using the time focus system. The time compression ratio is 3.8:1. Then, the pulse width maintains 131 fs by using the time collimation system. The time collimation ratio is 16.8 %.
出处 《中国激光》 EI CAS CSCD 北大核心 2015年第B09期267-273,共7页 Chinese Journal of Lasers
基金 国家自然科学基金(11305107)、中国博士后科学基金(2014M552228)、深圳市科技计划项目(JCYJ20140418182819143)
关键词 X射线光学 条纹相机 时间聚焦 时间准直 时间分辨率 X-ray optics streak camera time focus time collimation temporal resolution
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  • 1MONASTYRSKI M A, ANDREEV S V, GREENFIELD D E, et al. Theoretical and computer study on the possibility of subfemtosecond (attosecond) temporal focusing of photoelectron probing bunches with quasi-stationary electromagnetic fields[C]. SPIE, 2003, 4948:305-310.
  • 2RICCI K N, SMITH T I. Longitudinal electron beam and free electron laser microbunch measurements using off-phase RF acceleration[J]. Physical Review Special Topics-Accelerators and Beams, 2000, 3(3):032801.
  • 3QIAN Bao-Liang, ELSAYED-ALI H E, A new compensating element for a femtosecond photoelectron gun[J]. Review of Scientific Instruments, 2001, 72(9):3507-3513.
  • 4QIAN Bao-Liang, ELSAYED-ALI H E. Acceleration element for femtosecond electron pulse compression[J]. Physical Review E, 2002, 65(4):046502.
  • 5LIU J, NIU L, LI J, et al. Theoretical analysis of a time focus and time amplifier cavity in streak tube[C]. SPIE, 2007, 6279:62792I.
  • 6QIANG J, BYRD J M, FENG J, et al. X-ray streak camera temporal resolution improvement using a longitudinal time-dependent field[J]. Nuclear Instruments and Methods in Physics Research A, 2009, 598:465-469.
  • 7NAGEL S R, HILSABECK T J, BELL P M, et al. Dilation x-ray imager a new/faster gated x-ray imager for the NIF[J]. Review of Scientific Instruments, 2012, 83(10):10E116.
  • 8NAGEL S R, HILSABECK T J, BELL P M, et al. Investigating high speed phenomena in laser plasma interactions using dilation x-ray imager[J]. Review of Scientific Instruments, 2014, 85(11):11E504.
  • 9HILSABECK T J, HARES J D, KILKENNY J D, et al. Pulse-dilation enhanced gated optical imager with 5 ps resolution[J]. Review of Scientific Instruments, 2010, 81(10):10E317.
  • 10NAGEL S R, AYERS M J, FELKER B, et al. Performance measurements of the DIXI (dilation x-ray imager) photocathode using a laser produced x-ray source[C]. SPIE, 2012, 8505:85050H.

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