Spectroscopy of Rydberg Atomic Systems in a Black-Body Radiation Field
61
47. Glushkov AV, Ambrosov SV, Ignatenko AV, Korchevsky DA (2004) DC strong field stark
effect for non-hydrogenic atoms: consistent quantum mechanical approach. Int J Quant Chem
99:936–939
48. Glushkov AV, Ternovsky VB, Buyadzhi VV, Prepelitsa GP (2014) Geometry of a relativistic
quantum chaos: new approach to dynamics of quantum systems in electromagnetic field and
uniformity and charm of a chaos. Proc Intern Geom Cent 7(4):60–71
49. Ivanov LN, Ivanova EP (1979) Atomic ion energies for Na-like ions by a model potential
method Z = 25–80. Atom Data Nucl Data Tabl 24:95–109
50. Vidolova-Angelova E, Ivanov LN (1991) Autoionizing Rydberg states of thulium. Reorientation decay due to monopole interaction. J Phys B: At Mol Opt Phys 24:4147–4158
51. Ivanov LN, Ivanova EP (1996) Method of Sturm orbitals in calculation of physical
characteristics of radiation from atoms and ions. JETP 83:258–266
52. Ivanova EP, Ivanov LN, Glushkov AV, Kramida AE (1985) High order corrections in the
relativistic perturbation theory with the model zeroth approximation, Mg-Like and Ne-Like
Ions. Phys Scr 32:513–522
53. Ivanova EP, Glushkov AV (1986) Theoretical investigation of spectra of multicharged ions of
F-like and Ne-like isoelectronic sequences. J Quant Spectr Rad Transf 36:127–145
54. Ivanov LN, Ivanov EP, Knight L (1993) Energy approach to consistent QED theory for
calculation of electron-collision strengths: ne-like ions. Phys Rev A 48:4365–4374
55. Glushkov AV, Ivanov LN, Ivanova EP (1986) Autoionization phenomena in atoms. Moscow
University Press, Moscow
56. Glushkov AV, Ivano LN (1992) Radiation decay of atomic states: atomic residue polarization
and gauge noninvariant contributions. Phys Lett A 170:33–36
57. Glushkov AV (2008) Relativistic quantum theory. Quantum mechanics of atomic systems.
Astroprint, Odessa
58. Glushkov AV (2012) Advanced relativistic energy approach to radiative decay processes in
multielectron atoms and multicharged ions. In: Nishikawa K, Maruani J, Brandas E, DelgadoBarrio G, Piecuch P (eds) Advances in the theory of quantum systems in chemistry and physics.
Springer, Berlin, pp 231–252 (Ser. Progress in Theor. Chemistry and Physics)
59. Khetselius OY (2019) Optimized relativistic many-body perturbation theory calculation of
wavelengths and oscillator strengths for li-like multicharged ions. Adv Quant Chem 78:223–
251 (Elsevier). https://doi.org/10.1016/bs.aiq.2018.06.001
60. Glushkov AV, Multiphoton spectroscopy of atoms and nuclei in a laser field: relativistic
energy approach and radiation atomic lines moments method Adv Quant Chem 78:253–285
(Elsevier). https://doi.org/10.1016/bs.aiq.2018.06.004
61. Glushkov AV, Khetselius OY, Svinarenko AA, Buyadzhi VV (2015) Spectroscopy of
autoionization states of heavy atoms and multiply charged ions. TEC, Odessa
62. Ternovsky VB, Glushkov AV, Khetselius OY, Gurskaya MY, Kuznetsova AA (2018) Spectroscopy of radiative decay processes in heavy Rydberg alkali atomic systems. In: Wang Yan
A, Thachuk Mark, Krems Roman, Maruani Jean (eds) Concepts, methods and applications
of quantum systems in chemistry and physics, vol 31. Springer, Cham, pp 229–241 (Series:
Progress in Theoretical Chemistry and Physics)
63. Glushkov AV, Khetselius OY, Svinarenko AA (2013) Theoretical spectroscopy of autoionization resonances in spectra of lanthanide atoms. Phys Scr T153:014029
64. Malinovskaya SV, Glushkov AV, Khetselius OY, Svinarenko AA, Mischenko EV, Florko TA
(2009) Optimized perturbation theory scheme for calculating the interatomic potentials and
hyperfine lines shift for heavy atoms in the buffer inert gas. Int J Quant Chem 109:3325–3329
65. Glushkov AV, Khetselius OY, Lopatkin YM, Florko TA, Kovalenko OA, Mansarliysky VF
(2014) Collisional shift of hyperfine line for rubidium in an atmosphere of the buffer inert
gas. J Phys: Conf Ser 548:012026
66. Malinovskaya SV, Dubrovskaya YV, Vitavetskaya LA (2005) Advanced quantum mechanical
calculation of the beta decay probabilities. Energy approach to resonance states of compound
superheavy nucleus and EPPP in heavy nuclei collisions. In: Grzonka D, Czyzykiewicz R,
Oelert W, Rozek T, Winter P (eds) Low energy antiproton physics, vol 796. AIP, New York,
pp 201–205 (AIP Conf. Proc.)
61
47. Glushkov AV, Ambrosov SV, Ignatenko AV, Korchevsky DA (2004) DC strong field stark
effect for non-hydrogenic atoms: consistent quantum mechanical approach. Int J Quant Chem
99:936–939
48. Glushkov AV, Ternovsky VB, Buyadzhi VV, Prepelitsa GP (2014) Geometry of a relativistic
quantum chaos: new approach to dynamics of quantum systems in electromagnetic field and
uniformity and charm of a chaos. Proc Intern Geom Cent 7(4):60–71
49. Ivanov LN, Ivanova EP (1979) Atomic ion energies for Na-like ions by a model potential
method Z = 25–80. Atom Data Nucl Data Tabl 24:95–109
50. Vidolova-Angelova E, Ivanov LN (1991) Autoionizing Rydberg states of thulium. Reorientation decay due to monopole interaction. J Phys B: At Mol Opt Phys 24:4147–4158
51. Ivanov LN, Ivanova EP (1996) Method of Sturm orbitals in calculation of physical
characteristics of radiation from atoms and ions. JETP 83:258–266
52. Ivanova EP, Ivanov LN, Glushkov AV, Kramida AE (1985) High order corrections in the
relativistic perturbation theory with the model zeroth approximation, Mg-Like and Ne-Like
Ions. Phys Scr 32:513–522
53. Ivanova EP, Glushkov AV (1986) Theoretical investigation of spectra of multicharged ions of
F-like and Ne-like isoelectronic sequences. J Quant Spectr Rad Transf 36:127–145
54. Ivanov LN, Ivanov EP, Knight L (1993) Energy approach to consistent QED theory for
calculation of electron-collision strengths: ne-like ions. Phys Rev A 48:4365–4374
55. Glushkov AV, Ivanov LN, Ivanova EP (1986) Autoionization phenomena in atoms. Moscow
University Press, Moscow
56. Glushkov AV, Ivano LN (1992) Radiation decay of atomic states: atomic residue polarization
and gauge noninvariant contributions. Phys Lett A 170:33–36
57. Glushkov AV (2008) Relativistic quantum theory. Quantum mechanics of atomic systems.
Astroprint, Odessa
58. Glushkov AV (2012) Advanced relativistic energy approach to radiative decay processes in
multielectron atoms and multicharged ions. In: Nishikawa K, Maruani J, Brandas E, DelgadoBarrio G, Piecuch P (eds) Advances in the theory of quantum systems in chemistry and physics.
Springer, Berlin, pp 231–252 (Ser. Progress in Theor. Chemistry and Physics)
59. Khetselius OY (2019) Optimized relativistic many-body perturbation theory calculation of
wavelengths and oscillator strengths for li-like multicharged ions. Adv Quant Chem 78:223–
251 (Elsevier). https://doi.org/10.1016/bs.aiq.2018.06.001
60. Glushkov AV, Multiphoton spectroscopy of atoms and nuclei in a laser field: relativistic
energy approach and radiation atomic lines moments method Adv Quant Chem 78:253–285
(Elsevier). https://doi.org/10.1016/bs.aiq.2018.06.004
61. Glushkov AV, Khetselius OY, Svinarenko AA, Buyadzhi VV (2015) Spectroscopy of
autoionization states of heavy atoms and multiply charged ions. TEC, Odessa
62. Ternovsky VB, Glushkov AV, Khetselius OY, Gurskaya MY, Kuznetsova AA (2018) Spectroscopy of radiative decay processes in heavy Rydberg alkali atomic systems. In: Wang Yan
A, Thachuk Mark, Krems Roman, Maruani Jean (eds) Concepts, methods and applications
of quantum systems in chemistry and physics, vol 31. Springer, Cham, pp 229–241 (Series:
Progress in Theoretical Chemistry and Physics)
63. Glushkov AV, Khetselius OY, Svinarenko AA (2013) Theoretical spectroscopy of autoionization resonances in spectra of lanthanide atoms. Phys Scr T153:014029
64. Malinovskaya SV, Glushkov AV, Khetselius OY, Svinarenko AA, Mischenko EV, Florko TA
(2009) Optimized perturbation theory scheme for calculating the interatomic potentials and
hyperfine lines shift for heavy atoms in the buffer inert gas. Int J Quant Chem 109:3325–3329
65. Glushkov AV, Khetselius OY, Lopatkin YM, Florko TA, Kovalenko OA, Mansarliysky VF
(2014) Collisional shift of hyperfine line for rubidium in an atmosphere of the buffer inert
gas. J Phys: Conf Ser 548:012026
66. Malinovskaya SV, Dubrovskaya YV, Vitavetskaya LA (2005) Advanced quantum mechanical
calculation of the beta decay probabilities. Energy approach to resonance states of compound
superheavy nucleus and EPPP in heavy nuclei collisions. In: Grzonka D, Czyzykiewicz R,
Oelert W, Rozek T, Winter P (eds) Low energy antiproton physics, vol 796. AIP, New York,
pp 201–205 (AIP Conf. Proc.)
