Bunch evolution study in optimization of MeV ultrafastelectron diffraction

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LU Xian-Hai, DU Ying-Chao, HUANG Wen-Hui and TANG Chuan-Xiang. Bunch evolution study in optimization of MeV ultrafastelectron diffraction[J]. Chinese Physics C, 2014, 38(12): 128201. doi: 10.1088/1674-1137/38/12/128201
LU Xian-Hai, DU Ying-Chao, HUANG Wen-Hui and TANG Chuan-Xiang. Bunch evolution study in optimization of MeV ultrafastelectron diffraction[J]. Chinese Physics C, 2014, 38(12): 128201.  doi: 10.1088/1674-1137/38/12/128201 shu
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Received: 2014-01-02
Revised: 2014-01-02
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Bunch evolution study in optimization of MeV ultrafastelectron diffraction

    Corresponding author: TANG Chuan-Xiang,

Abstract: Megaelectronvolt ultrafast electron diffraction (UED) is a promising detection tool for ultrafast processes. The quality of diffraction image is determined by the transverse evolution of the probe bunch. In this paper, we study the contributing terms of the emittance and space charge effects to the bunch evolution in the MeV UED scheme, employing a mean-field model with an ellipsoidal distribution as well as particle tracking simulation. The small transverse dimension of the drive laser is found to be critical to improve the reciprocal resolution, exploiting both smaller emittance and larger transverse bunch size before the solenoid. The degradation of the reciprocal spatial resolution caused by the space charge effects should be carefully controlled.

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