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近玻尔速度不同离子碰撞产生 Al 的 K X 射线

Translated title of the contribution: K-shell X-ray of Al produced by collisions of ions with near Bohr velocities
  • Xian Ming Zhou
  • , Jing Wei
  • , Rui Cheng
  • , Chang Hui Liang
  • , Yan Hong Chen
  • , Yong Tao Zhao
  • , Xiao An Zhang
  • Xianyang Normal University
  • Xi'an Jiaotong University
  • CAS - Institute of Modern Physics

Research output: Contribution to journalArticlepeer-review

Abstract

X-ray emissionproduced by highly charged ions with the energy range near the Bohr velocity involves complicated atomic process. However, duo to the limitation of experimental conditions, the relevant researches are nearly absent. It is unclear whether the existing theory is applicable in such an energy range. This needs further exploring. In the present work, K X-ray spectra of Al excited by H+, He2+ and highly charged heavy ions I22+ and Xe20+ are investigated by using an Si drift X-ray detector in the energy range near the Bohr velocity. The X-ray production cross sections are extracted from the X-ray counts and compared with the theoretical simulations from PWBA, ECPSSR and modified BEA model. It is indicated that the cross section increases with the augment of projectile energy. With the same incident energy per nucleon, the cross section induced by highly charged heavy ions is a factor of about 104 larger than that by light ions . With the impact of H+ and He2+ ions, the K-shell electrons are mainly knocked off through the direct Coulomb ionization, and the X-ray emission cross section can be well predicted by ECPSSR theory. For the bombardment of highly charged heavy ions I22+ and Xe20+, except for the Coulomb ionization, the orbital electrons can also be excited by electron capture. The BEA simulation after being modified by both Coulomb repulsion and effective charge can well predict the X-ray production cross section.

Translated title of the contributionK-shell X-ray of Al produced by collisions of ions with near Bohr velocities
Original languageChinese (Traditional)
Article number013402
JournalWuli Xuebao/Acta Physica Sinica
Volume72
Issue number1
DOIs
StatePublished - 5 Jan 2023

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