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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The high-power operation of a terahertz free-electron laser based on a normal conducting RF linac using beam conditioning
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The high-power operation of a terahertz free-electron laser based on a normal conducting RF linac using beam conditioning

机译:基于常规射频线性加速器的束流调理,太赫兹自由电子激光器的大功率工作

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The feed-forward control of the amplitude and phase of a high-power RF pulse based on the overdrive technique is applied to an L-band electron linac to ensure that the energy of the electron beam is uniform and constant enough for the recommissioning of a terahertz (THz) free-electron laser (FEL) at the Institute of Scientific and Industrial Research (ISIR), Osaka University. The quality of the electron beam is evaluated using the time-resolved measurement of its energy spectrum; the energy is constant within 0.1% during the electron macropulse for 15 MeV energy except for the transient period in the leading edge. A high-power, stable FEL operation that reaches saturation is obtained using beam conditioning. The characteristics and performance of the FEL for THz radiation are measured at the end of an evacuated transport line. The frequency ranges from 2 to 12 THz, from 25 to 150 μm in wavelength, and the maximum energy in the FEL macropulse with a ~3 us duration is 3.7 mj at 67 μm; using these values, the peak power in the macropulse is calculated to be 1.2 kW, while that in the micropulse with a 20 ps duration is calculated to be 0.5 MW. These values are comparable to those in the THz range of other FELs that are based on normal conducting RF linacs.
机译:基于过驱动技术的高功率RF脉冲的幅度和相位的前馈控制应用于L波段电子直线加速器,以确保电子束的能量均匀且恒定,足以重新发射电子。大阪大学科学与工业研究所(ISIR)的太赫兹(THz)自由电子激光器(FEL)。电子束的质量通过其能谱的时间分辨测量来评估。在15 MeV能量的电子大脉冲期间,除前沿的瞬变周期外,能量恒定在0.1%内。使用光束调节可获得达到饱和的高功率,稳定的FEL操作。太赫兹辐射的FEL的特性和性能是在真空运输线的末端进行测量的。频率范围为2到12 THz,波长范围为25到150μm,持续时间约3 us的FEL宏脉冲的最大能量在67μm处为3.7 mj。使用这些值,宏脉冲中的峰值功率计算为1.2 kW,而持续时间为20 ps的微脉冲中的峰值功率计算为0.5 MW。这些值可与其他基于普通传导RF直线加速器的FEL的THz范围内的值相媲美。

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