arXiv Open Access 2020

Region-of-interest micro-focus CT based on an all-optical inverse Compton scattering source

Yue Ma Jianfei Hua Dexiang Liu Yunxiao He Tianliang Zhang +8 lainnya
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Abstrak

Micro-focus computed tomography (CT), enabling the reconstruction of hyperfine structure within objects, is a powerful nondestructive testing tool in many fields. Current X-ray sources for micro-focus CT are typically limited by their relatively low photon energy and low flux. An all-optical inverse Compton scattering source (AOCS) based on laser wakefield accelerator (LWFA) can generate intense quasi-monoenergetic X/gamma-ray pulses in the keV-MeV range with micron-level source size, and its potential application for micro-focus CT has become very attractive in recent years due to the fast pace progress made in LWFA. Here we report the first experimental demonstration of high-fidelity micro-focus CT using AOCS (~70 keV) by imaging and reconstructing a test object with complex inner structures. A region-of-interest (ROI) CT method is adopted to utilize the relatively small field-of-view (FOV) of AOCS to obtain high-resolution reconstruction. This demonstration of the ROI micro-focus CT based on AOCS is a key step for its application in the field of hyperfine nondestructive testing.

Penulis (13)

Y

Yue Ma

J

Jianfei Hua

D

Dexiang Liu

Y

Yunxiao He

T

Tianliang Zhang

J

Jiucheng Chen

F

Fan Yang

X

Xiaonan Ning

Z

Zhongshan Yang

J

Jie Zhang

C

Chih-Hao Pai

Y

Yuqiu Gu

W

Wei Lu

Format Sitasi

Ma, Y., Hua, J., Liu, D., He, Y., Zhang, T., Chen, J. et al. (2020). Region-of-interest micro-focus CT based on an all-optical inverse Compton scattering source. https://arxiv.org/abs/2003.12837

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Tahun Terbit
2020
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en
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arXiv
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Open Access ✓