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Continuously tunable narrowband pulses in the THz gap from laser-modulated electron bunches in a storage ring

机译:来自存储环中激光调制电子束的THz间隙中的连续可调窄带脉冲

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This article reports on the generation of narrowband coherent synchrotron radiation from an electron storage ring. For the first time, this kind of radiation was now produced with continuously tunable frequencies in the so-called ``THz gap'' (between 1.2 and 5.6 THz), whereas previous experiments were limited to below 750 GHz. The experiment was performed at the DELTA storage ring in Dortmund, Germany, employing the interaction of external intensity-modulated laser pulses with an electron bunch, which causes a periodic longitudinal modulation of the charge density on a sub-millimeter scale. Furthermore, a strong influence of third-order dispersion in the laser pulses on the bandwidth and peak intensity of the THz radiation was observed. This effect is discussed in detail based on numerical simulations of the laser pulse generation and laser-electron interaction, and a modification of the laser system for compensating third-order dispersion is proposed.
机译:本文报道了由电子存储环产生的窄带相干同步加速器辐射。现在,这种辐射首次以所谓的``THz间隙''(1.2至5.6 THz之间)的连续可调频率产生,而先前的实验仅限于750 GHz以下。该实验是在德国多特蒙德的DELTA储存环上进行的,利用了外部强度调制的激光脉冲与电子束的相互作用,这引起了亚毫米级的电荷密度的周期性纵向调制。此外,观察到激光脉冲中的三阶色散对太赫兹辐射的带宽和峰值强度的强烈影响。基于激光脉冲产生和激光-电子相互作用的数值模拟,详细讨论了这种效果,并提出了一种用于补偿三阶色散的激光系统的改进方案。

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