Infrared and Laser Engineering, Volume. 50, Issue 12, 20210734(2021)
Research on Compton scattering noise in the X-ray Fourier-transform ghost imaging (Invited)
Fig. 3. FGI and CDI simulation results at different X-ray flux. (a) X-ray FGI results with 1 nm wavelength; (b) X-ray FGI results with 0.1 nm wavelength; (c) X-ray CDI results with 1 nm wavelength; (d) X-ray CDI results with 0.1 nm wavelength
Fig. 4. Compton scattering distribution of samples at different photon energies. (a)-(c) Scattering distribution of Au, Si, Hemoglobin in the X-ray system with 1 nm wavelength, respectively; (d)-(f) Scattering distribution of Au, Si, Hemoglobin in the X-ray system with 0.1 nm wavelength, respectively
Fig. 5. Scattering results of three samples at different photon energies. (a), (b) Curves of the coherent scattering photon number and the Compton scattering photon number of Au, Si, Hemoglobin samples varying with the photon energy; (c) Curves of the ratio of the coherent scattering photon number to the Compton scattering photon number varying with the photon energy
Fig. 6. X-ray FGI and CDI results with 0.1 nm wavelength at different flux. (a), (b), (c) X-ray FGI results with detecting flux of 0.1, 1, 10 , respectively; (d), (e), (f) X-ray CDI results with detecting flux of 0.1, 1, 10 , respectively 波长0.1 nm 的X射线FGI与CDI模拟结果。(a)、 (b)、 (c) X射线FGI结果,探测面光通量依次为0.1,1,10 ;(d)、 (e)、 (f) X射线CDI结果,探测面光通量依次为0.1,1,10
Fig. 7. X-ray FGI and CDI results with 1 nm wavelength at different flux. (a), (b), (c) X-ray FGI results with detecting flux of 0.1, 1, 10 , respectively; (d), (e), (f) X-ray CDI results with detecting flux of 0.1, 1, 10 , respectively 波长1 nm 的X射线FGI与CDI模拟结果。(a)、 (b)、 (c) 为X射线FGI结果,探测面光通量依次为0.1,1,10 ;(d)、 (e)、 (f) 为X射线CDI结果,探测面光通量依次为0.1,1,10
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Qingyu Li, Zhijie Tan, Hong Yu, Shensheng Han. Research on Compton scattering noise in the X-ray Fourier-transform ghost imaging (Invited)[J]. Infrared and Laser Engineering, 2021, 50(12): 20210734
Category: Special issue—Single-pixel imaging
Received: Oct. 8, 2021
Accepted: --
Published Online: Feb. 9, 2022
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