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采用直接电子检测的高重复率超快电子衍射

High-repetition-rate ultrafast electron diffraction with direct electron detection.

作者信息

Diaz F R, Mero M, Amini K

机构信息

Max-Born-Institut, Max-Born-Straße 2A, 12489 Berlin, Germany.

出版信息

Struct Dyn. 2024 Sep 27;11(5):054302. doi: 10.1063/4.0000256. eCollection 2024 Jul.

Abstract

Ultrafast electron diffraction (UED) instruments typically operate at kHz or lower repetition rates and rely on indirect detection of electrons. However, these experiments encounter limitations because they are required to use electron beams containing a relatively large number of electrons (≫100 electrons/pulse), leading to severe space-charge effects. Consequently, electron pulses with long durations and large transverse diameters are used to interrogate the sample. Here, we introduce a novel UED instrument operating at a high repetition rate and employing direct electron detection. We operate significantly below the severe space-charge regime by using electron beams containing 1-140 electrons per pulse at 30 kHz. We demonstrate the ability to detect time-resolved signals from thin film solid samples with a difference contrast signal, , and an instrument response function as low as 10 and 184-fs (FWHM), respectively, without temporal compression. Overall, our findings underscore the importance of increasing the repetition rate of UED experiments and adopting a direct electron detection scheme, which will be particularly impactful for gas-phase UED. Our newly developed scheme enables more efficient and sensitive investigations of ultrafast dynamics in photoexcited samples using ultrashort electron beams.

摘要

超快电子衍射(UED)仪器通常以千赫兹或更低的重复频率运行,并依赖于对电子的间接检测。然而,这些实验存在局限性,因为它们需要使用包含相对大量电子(≫100个电子/脉冲)的电子束,这会导致严重的空间电荷效应。因此,使用持续时间长且横向直径大的电子脉冲来探测样品。在此,我们介绍一种新型的UED仪器,它以高重复频率运行并采用直接电子检测。我们通过在30千赫兹下使用每个脉冲包含1 - 140个电子的电子束,在显著低于严重空间电荷区域的条件下运行。我们展示了能够从薄膜固体样品中检测时间分辨信号的能力,其差分对比度信号 以及仪器响应函数分别低至10飞秒和184飞秒(半高宽),无需时间压缩。总体而言,我们的研究结果强调了提高UED实验重复频率以及采用直接电子检测方案的重要性,这对于气相UED将具有特别重要的影响。我们新开发的方案能够使用超短电子束对光激发样品中的超快动力学进行更高效、更灵敏的研究。

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