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Improving temporal resolution of ultrafast electron diffraction by eliminating arrival time jitter induced by radiofrequency bunch compression cavities

机译:通过消除射频束压缩腔引起的到达时间抖动来提高超快电子衍射的时间分辨率

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The temporal resolution of sub-relativistic ultrafast electron diffraction (UED) is generally limited by the radio frequency (RF) phase and amplitude jitter of the RF lenses that are used to compress the electron pulses. We theoretically show how to circumvent this limitation by using a combination of several RF compression cavities. We show that if powered by the same RF source and with a proper choice of RF field strengths, RF phases, and distances between the cavities, the combined arrival time jitter due to RF phase jitter of the cavities is cancelled at the compression point. We also show that the effect of RF amplitude jitter on the temporal resolution is negligible when passing through the cavity at a RF phase optimal for (de)compression. This will allow improvement of the temporal resolution in UED experiments to well below 100 fs.
机译:亚相对论超快电子衍射(UED)的时间分辨率通常受到用于压缩电子脉冲的RF透镜的射频(RF)相位和幅度抖动的限制。我们从理论上说明了如何通过结合使用多个RF压缩腔来避免这种限制。我们表明,如果由相同的RF源供电,并且具有适当的RF场强,RF相位以及腔之间的距离选择,则由于腔的RF相位抖动而导致的组合到达时间抖动会在压缩点处消除。我们还表明,当以(去)压缩最佳的RF相位通过腔体时,RF幅度抖动对时间分辨率的影响可以忽略不计。这将使UED实验中的时间分辨率提高到远低于100 fs。

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