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All citations with Sang-Kil Son containing “TDDFT”

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  1. Sang-Kil Son and Shih-I Chu, Multielectron effects on the orientation dependence and photoelectron angular distribution of multiphoton ionization of CO2 in strong laser fields, Phys. Rev. A 80, 011403(R) (2009) [bib][BibTeX][pdf][pdf][abstract][abstract][link]doi:10.1103/PhysRevA.80.011403
  2. Sang-Kil Son and Shih-I Chu, Theoretical study of orientation-dependent multiphoton ionization of polyatomic molecules in intense ultrashort laser fields: A new time-dependent Voronoi-cell finite difference method, Chem. Phys. 366, 91–102 (2009) [bib][BibTeX][pdf][pdf][abstract][abstract][link]doi:10.1016/j.chemphys.2009.09.006
  3. Sang-Kil Son and Shih-I Chu, Multiple orbital contribution in multiphoton ionization of H2O in intense ultrafast laser fields in International Conference on Attosecond Physics (Manhattan, Kansas, July 28-August 1, 2009) [poster] [bib][BibTeX][pdf][pdf][slide][slide: 2Mb][abstract][abstract][link][link]
  4. Sang-Kil Son and Shih-I Chu, Multielectron Effects on Strong-field Multiphoton Ionization of Polyatomic Molecules in Kansas Physical Chemistry Symposium (University of Kansas, Lawrence, Kansas, United States, November 7, 2009) [oral presentation] [bib][BibTeX][slide][slide: 3Mb][abstract][abstract]
  5. Sang-Kil Son, New Development of Theoretical and Computational Methods for Probing Strong-Field Multiphoton Processes, Ph.D. Thesis, University of Kansas (2009) [bib][BibTeX][pdf][pdf][slide][slide: 17Mb][abstract][abstract]
  6. Sang-Kil Son, Theoretical study of strong-field multiphoton ionization of polyatomic molecules: a new time-dependent Voronoi-cell finite difference method in CFEL Seminar (CFEL, DESY, Hamburg, Germany, July 23, 2010) [oral presentation] [bib][BibTeX][pdf][pdf][slide][slide: 6Mb][abstract][abstract][link][link]
  7. Andrea Trabattoni, Joss Wiese, Umberto De Giovannini, Jean-François Olivieri, Terry Mullins, Jolijn Onvlee, Sang-Kil Son, Biagio Frusteri, Angel Rubio, Sebastian Trippel, and Jochen Küpper, Setting the photoelectron clock through molecular alignment, Nat. Commun. 11, 2546 (2020) [bib][BibTeX][pdf][pdf][abstract][abstract][link]doi:10.1038/s41467-020-16270-0

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