60
A. V. Glushkov et al.
26. Safronova UI, Safronova MS (2009) Third-order relativistic many-body calculations of energies, transition rates, hyperfine constants, and blackbody radiation shift in 171 Yb + . Phys Rev
A 79:022512
27. Glushkov AV, Khetselius OY, Loboda AV, Ignatenko AV, Svinarenko AA, Korchevsky DA,
Lovett L (2008) QED approach to modeling spectra of the multicharged ions in a plasma:
oscillator and electron-ion collision strengths. AIP Conf Proc 1058:175–177
28. Buyadzhi VV, Zaichko PA, Antoshkina OA, Kulakli TA, Prepelitsa GP, Ternovsky VB,
Mansarliysky VF (2017) Computing of radiation parameters for atoms and multicharged
ions within relativistic energy approach: advanced code. J Phys: Conf Ser 905:012003
29. Buyadzhi VV (2015) Laser multiphoton spectroscopy of atom embedded in debye plasmas:
multiphoton resonances and transitions. Photoelectronics 24:128–133
30. Buyadzhi VV, Chernyakova YG, Smirnov AV, Tkach TB (2016) Electron-collisional
spectroscopy of atoms and ions in plasma: be-like ions. Photoelectronics 25:97–101
31. Buyadzh VV, Chernyakova YG, Antoshkina OA, Tkach TB (2017) Spectroscopy of multicharged ions in plasmas: Oscillator strengths of Be-like ion Fe. Photoelectronics 26:94–102
32. Florko TA, Ambrosov SV, Svinarenko AA, Tkach TB (2012) Collisional shift of the heavy
atoms hyperfine lines in an atmosphere of the inert gas. J Phys: Conf Ser 397(1):012037
33. Buyadzhi VV, Glushkov AV, Mansarliysky VF, Ignatenko AV, Svinarenko AA (2015) Spectroscopy of atoms in a strong laser field: new method to sensing AC stark effect, multiphoton
resonances parameters and ionization cross-sections. Sens Electr Microsys 12(4):27–36
34. Glushkov AV, Gurskaya MY, Ignatenko AV, Smirnov AV, Serga IN, Svinarenko AA, Ternovsky EV (2017) Computational code in atomic and nuclear quantum optics: advanced
computing multiphoton resonance parameters for atoms in a strong laser field. J Phys: Conf
Ser 905(1):012004
35. Dubrovskaya YV, Khetselius OY, Vitavetskaya LA, Ternovsky VB, Serga IN (2019) Quantum chemistry and spectroscopy of pionic atomic systems with accounting for relativistic,
radiative, and strong interaction effects. Adv Quantum Chem 78:193–222 (Elsevier). https://
doi.org/10.1016/bs.aiq.2018.06.003
36. Kuznetsova AA, Glushkov AV, Ignatenko AV, Svinarenko AA, Ternovsky VB (2019) Spectroscopy of multielectron atomic systems in a DC electric field. Adv Quant Chem 78:287–306
(Elsevier)
37. Glushkov AV (2005) Atom in electromagnetic field. KNT, Kiev
38. Gross EG, Kohn W (2005) Exchange-correlation functionals in density functional theory.
Plenum, New York
39. Glushkov AV, Lovett L, Khetselius OY, Gurnitskaya EP, Dubrovskaya YV, Loboda AV (2009)
Generalized multiconfiguration model of decay of multipole giant resonances applied to
analysis of reaction (μ-n) on the nucleus 40 Ca. Int J Modern Phys A 24(2–3):611–615
40. Glushkov AV, Malinovskaya SV, Sukharev DE, Khetselius OY, Loboda AV, Lovett L
(2009) Green’s function method in quantum chemistry: new numerical algorithm for the
dirac equation with complex energy and Fermi-model nuclear potential. Int J Quant Chem
109:1717–1727
41. Khetselius OY (2009) Relativistic perturbation theory calculation of the hyperfine structure
parameters for some heavy-element isotopes. Int J Quant Chem 109:3330–3335
42. Khetselius OY (2009) Relativistic calculation of the hyperfine structure parameters for heavy
elements and laser detection of the heavy isotopes. Phys Scr T 135:014023
43. Serga IN, Dubrovskaya YV, Kvasikova AS, Shakhman AN, Sukharev DE (2012) Spectroscopy
of hadronic atoms: energy shifts. J Phys: Conf Ser 397:012013
44. Svinarenko AA (2014) Study of spectra for lanthanides atoms with relativistic many-body
perturbation theory: Rydberg resonances. J Phys: Conf Ser 548:012039
45. Indelicato P, Desclaux JP (1993) Projection operator in the multiconfiguration Dirac-Fock
method. Phys Scr T46:110
46. Sapirstein J (1998) Theoretical methods for the relativistic atomic many-body problem. Rev
Mod Phys 70:55
A. V. Glushkov et al.
26. Safronova UI, Safronova MS (2009) Third-order relativistic many-body calculations of energies, transition rates, hyperfine constants, and blackbody radiation shift in 171 Yb + . Phys Rev
A 79:022512
27. Glushkov AV, Khetselius OY, Loboda AV, Ignatenko AV, Svinarenko AA, Korchevsky DA,
Lovett L (2008) QED approach to modeling spectra of the multicharged ions in a plasma:
oscillator and electron-ion collision strengths. AIP Conf Proc 1058:175–177
28. Buyadzhi VV, Zaichko PA, Antoshkina OA, Kulakli TA, Prepelitsa GP, Ternovsky VB,
Mansarliysky VF (2017) Computing of radiation parameters for atoms and multicharged
ions within relativistic energy approach: advanced code. J Phys: Conf Ser 905:012003
29. Buyadzhi VV (2015) Laser multiphoton spectroscopy of atom embedded in debye plasmas:
multiphoton resonances and transitions. Photoelectronics 24:128–133
30. Buyadzhi VV, Chernyakova YG, Smirnov AV, Tkach TB (2016) Electron-collisional
spectroscopy of atoms and ions in plasma: be-like ions. Photoelectronics 25:97–101
31. Buyadzh VV, Chernyakova YG, Antoshkina OA, Tkach TB (2017) Spectroscopy of multicharged ions in plasmas: Oscillator strengths of Be-like ion Fe. Photoelectronics 26:94–102
32. Florko TA, Ambrosov SV, Svinarenko AA, Tkach TB (2012) Collisional shift of the heavy
atoms hyperfine lines in an atmosphere of the inert gas. J Phys: Conf Ser 397(1):012037
33. Buyadzhi VV, Glushkov AV, Mansarliysky VF, Ignatenko AV, Svinarenko AA (2015) Spectroscopy of atoms in a strong laser field: new method to sensing AC stark effect, multiphoton
resonances parameters and ionization cross-sections. Sens Electr Microsys 12(4):27–36
34. Glushkov AV, Gurskaya MY, Ignatenko AV, Smirnov AV, Serga IN, Svinarenko AA, Ternovsky EV (2017) Computational code in atomic and nuclear quantum optics: advanced
computing multiphoton resonance parameters for atoms in a strong laser field. J Phys: Conf
Ser 905(1):012004
35. Dubrovskaya YV, Khetselius OY, Vitavetskaya LA, Ternovsky VB, Serga IN (2019) Quantum chemistry and spectroscopy of pionic atomic systems with accounting for relativistic,
radiative, and strong interaction effects. Adv Quantum Chem 78:193–222 (Elsevier). https://
doi.org/10.1016/bs.aiq.2018.06.003
36. Kuznetsova AA, Glushkov AV, Ignatenko AV, Svinarenko AA, Ternovsky VB (2019) Spectroscopy of multielectron atomic systems in a DC electric field. Adv Quant Chem 78:287–306
(Elsevier)
37. Glushkov AV (2005) Atom in electromagnetic field. KNT, Kiev
38. Gross EG, Kohn W (2005) Exchange-correlation functionals in density functional theory.
Plenum, New York
39. Glushkov AV, Lovett L, Khetselius OY, Gurnitskaya EP, Dubrovskaya YV, Loboda AV (2009)
Generalized multiconfiguration model of decay of multipole giant resonances applied to
analysis of reaction (μ-n) on the nucleus 40 Ca. Int J Modern Phys A 24(2–3):611–615
40. Glushkov AV, Malinovskaya SV, Sukharev DE, Khetselius OY, Loboda AV, Lovett L
(2009) Green’s function method in quantum chemistry: new numerical algorithm for the
dirac equation with complex energy and Fermi-model nuclear potential. Int J Quant Chem
109:1717–1727
41. Khetselius OY (2009) Relativistic perturbation theory calculation of the hyperfine structure
parameters for some heavy-element isotopes. Int J Quant Chem 109:3330–3335
42. Khetselius OY (2009) Relativistic calculation of the hyperfine structure parameters for heavy
elements and laser detection of the heavy isotopes. Phys Scr T 135:014023
43. Serga IN, Dubrovskaya YV, Kvasikova AS, Shakhman AN, Sukharev DE (2012) Spectroscopy
of hadronic atoms: energy shifts. J Phys: Conf Ser 397:012013
44. Svinarenko AA (2014) Study of spectra for lanthanides atoms with relativistic many-body
perturbation theory: Rydberg resonances. J Phys: Conf Ser 548:012039
45. Indelicato P, Desclaux JP (1993) Projection operator in the multiconfiguration Dirac-Fock
method. Phys Scr T46:110
46. Sapirstein J (1998) Theoretical methods for the relativistic atomic many-body problem. Rev
Mod Phys 70:55
