Sang-Kil Son, Ph.D.
Affiliations: | 2009 | Chemistry | University of Kansas, Lawrence, KS, United States |
Area:
Physical Chemistry, Molecular Physics, Optics PhysicsGoogle:
"Sang-Kil Son"Mean distance: (not calculated yet)
Parents
Sign in to add mentorShih-I Chu | grad student | 2009 | University of Kansas | |
(New development of theoretical and computational methods for probing strong -field multiphoton processes.) |
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Publications
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Rörig A, Son SK, Mazza T, et al. (2023) Multiple-core-hole resonance spectroscopy with ultraintense X-ray pulses. Nature Communications. 14: 5738 |
Jin R, Jurek Z, Santra R, et al. (2022) Plasma environmental effects in the atomic structure for simulating x-ray free-electron-laser-heated solid-density matter. Physical Review. E. 106: 015206 |
LaForge AC, Son SK, Mishra D, et al. (2021) Resonance-Enhanced Multiphoton Ionization in the X-Ray Regime. Physical Review Letters. 127: 213202 |
Jin R, Abdullah MM, Jurek Z, et al. (2021) Transient ionization potential depression in nonthermal dense plasmas at high x-ray intensity. Physical Review. E. 103: 023203 |
Li X, Inhester L, Osipov T, et al. (2021) Electron-ion coincidence measurements of molecular dynamics with intense X-ray pulses. Scientific Reports. 11: 505 |
Trabattoni A, Wiese J, De Giovannini U, et al. (2020) Setting the photoelectron clock through molecular alignment. Nature Communications. 11: 2546 |
Kumagai Y, Jurek Z, Xu W, et al. (2020) Real-time observation of disintegration processes within argon clusters ionized by a hard-x-ray pulse of moderate fluence Physical Review A. 101 |
Toyota K, Jurek Z, Son SK, et al. (2019) xcalib: a focal spot calibrator for intense X-ray free-electron laser pulses based on the charge state distributions of light atoms. Journal of Synchrotron Radiation. 26: 1017-1030 |
Hao Y, Inhester L, Son S, et al. (2019) Theoretical evidence for the sensitivity of charge-rearrangement-enhanced x-ray ionization to molecular size Physical Review A. 100 |
Abdullah MM, Son SK, Jurek Z, et al. (2018) Towards the theoretical limitations of X-ray nanocrystallography at high intensity: the validity of the effective-form-factor description. Iucrj. 5: 699-705 |