4.4 Article

Thicket high Z wavelength-scale structured target: advantages and limitations for laser-driven hard x-ray source and phase contrast imaging

期刊

LASER PHYSICS LETTERS
卷 18, 期 7, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1612-202X/ac034a

关键词

laser-driven hard x-ray source; structured targets; laser pulse contrast; x-ray phase-contrast imaging

资金

  1. RSF [18-79-10160]
  2. Russian Science Foundation [18-79-10160] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

The characterization of hard x-ray copper K (alpha) source indicates that using structured copper targets can significantly increase photon flux and conversion efficiency, but the efficient use at higher intensity is limited. The lateral coherence of the x-ray source does not differ between the flat and thicket targets, making it suitable for x-ray phase contrast imaging.
The hard x-ray copper K (alpha) source formed by the interaction of a high intensity laser pulse with flat and thicket sub-micron structured copper targets is thoroughly characterized. It is shown that the flux of quanta can be increased up to several times using the structured target instead of the flat one. The maximal conversion efficiency into K (alpha) reaches 1.4 x 10(-4) corresponding to >10(9) photons with a high contrast ratio over the bremsstrahlung radiation at the peak intensity similar to 10(18) W cm(-2). The efficient use of the thicket target at higher intensity (2 x 10(18) W cm(-2)) is limited by temporal contrast of the laser pulse and the few-fold lowered damage threshold of the modified target. Measurements of the x-ray source size revealed that the lateral coherence is similar both for the flat and thicket target. The estimated source size of similar to 15 mu m makes it suitable for the x-ray phase contrast imaging with reasonable geometry and short time object exposure. A simple concept of the image acquisition correction is proposed in order to account for the x-ray source lateral shifts, which is based on measurements in each shot instead of long exposure. Image post-processing allowed us to enhance source lateral coherence and retrieve phase contrast effects when the x-ray source shifts exceed its size.

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