Dr. Zhangyong Song

E-mail: songzhy@impcas.ac.cn

Tell: 13099160296



Research Areas

We are interested in the interaction of slow highly charged ions with solid surfaces, and we measure the x-ray emission to obtain information about the hollow atoms formed in the interaction. As silicate minerals are used as the solid surfaces, we can simulate the comet-x-ray emission in the lab by the collisions of slow nitrogen and oxygen-charged ions with them.


Publications

  1. Theoretical and experimental studies on the captured electron population probability of hydrogen-like O and N ions in collision with Al surface, Acta Physica Sinica 71, 133201 (2022). Corresponding author.

  2. K-shell ionization of 25–100 keV Nq+ (q = 3, 5) ions impinging on Al and Cu surfaces, The European Physical Journal D 76, 49(2022). Corresponding author.

  3. X-ray emission produced by interaction of slow highly charged Oq+ ions with Al surfaces, Acta Physica Sinica 70, 193201(2021). Corresponding author.

  4. Characteristical K-shell X-ray emission in collisions of low-energy highly charged nitrogen ions with a Cu surfaceNuclear Techniques 44, 120502(2021). Corresponding author.

  5. Effects of Doppler Broadening on Image Resolution for Compton Camera, Nuclear Physics Review 38, 215(2021). First author and Corresponding author.

  6. State-selective nonradiative electron capture in collisions of 95-197-MeV/u Xe54+ with Kr and Xe, Physical Review A 104, 032815 (2021).

  7. Evidence for target outer-shell excitation mediated by electron correlation in single-electron-capture collisions of slow He2+ ions with Ar atoms, Physical Review A 102, 042820 (2020). First author and Corresponding author.

  8. Alignment of the projectile 2p(3/2) state created by nonradiative electron capture in 95-and 146-MeV/u Xe54+ with Kr and Xe collisions, Physical Review A 102, 042803 (2020).

  9. Analysis and simultion for Compton camera′s imaging resolution, Acta Physica Sinica 68, 118701(2019). First author and Corresponding author.

  10. Production and decay of K-shell hollow krypton in collisions with 52-197-MeV/u bare xenon ions, Physical Review A 96, 012708 (2017).

  11. The continuous and discrete molecular orbital x-ray bands from Xe q+ (12≤q≤29) +Zn collisions, Scientific Reports 6, 30644 (2016).

  12. Rydberg-to-M-shell x-ray emission of hollow Xeq+(q=27-30) atoms or ions above metal surfaces, Physical Review A 91, 042707(2015). First author.

  13. Electron and recoil ion momentum imaging with a magneto-optically trapped target, Review of Scientific Instruments 86, 033105(2015).

  14. Charge state effect on K-shell ionization of aluminum by 600–3400 keV xenonq+ (q=12-29) ion collisions, The European Physical Journal D 64, 197 (2011). First author and Corresponding author.

  15. Studies of K-shell x-ray energy shifts induced  by MeV/u heavy ions, Studies of K-shell x-ray energy shifts induced  by MeV/u heavy ions, Chinese Physics B 18, 1443 (2009). First author and Corresponding author.

  16. A problem finding in calibration of Si(Au) surface-barrier semiconductor detector and a simple resolved method, Nuclear Electronics and Detection Technology 27, 1000 (2007). First author.

  17. Studies of X-ray spectra of highly Charged Ar~(17+) ion interacting with different solid surface, Journal of Atomic and Molecular Physics 23, 787 (2006). First author.