24
A. V. Glushkov
26. Klose JZ, Fuhr JR, Wiese WL (2002) Critically evaluated atomic transition probabilities for
Ba I and Ba II. J Phys Chem Ref Data 31:217–230
27. Bokor J, Freeman R, Cooke W (1982) Autoionization—pumped laser. Phys Rev Lett 48:1242–
1247
28. De Graaff RJ, Ubachs W, Hogervorst W (1992) 4fnf doubly excited autoioinizing states in
Barium. Phys Rev 45(1):166–178
29. Nicolaides CA (1992) Hole-projection, saddle points and localization in the theory of
autoionizing states. Phys Rev A 46:690–698
30. Nicolaides CA, Piangos NA (2001) State-specific approach and computation of resonance
states. Identification and properties of the lowest 2 P o and 2D triply excited states of He − .
Phys Rev A 64:052505
31. Nikitin SI, Ostrovsky VN (1980) The autoionization of high Rydberg atomic states with large
orbital momentum. J Phys B: Atom Mol Opt Phys 13:1961–1984
32. Yi Jong-hoon, Lee J, Kong HJ (1995) Autoionizing states of the ytterbium atom by threephoton polarization spectroscopy. Phys Rev A 51:3053–3057
33. Yi J, Park H, Lee J (2001) Investigation of even parity autoionizing states of Ytterbium atom
by two-photon ionization spectroscopy. J Korean Phys Soc 39:916–920
34. Bylicki M (1998) Methods involving complex coordinates applied to atoms. Adv Quant Chem
32:207–226
35. Poirier M (1997) Analysis of correlation effects in autoionizing doubly excited states of
barium using Coulomb Green’s function. Z Phys D 39:189–193
36. Chernenko AA, Beterov IM, Permyakova OI (2000) Modeling of amplification without inversion near transitions from autoionization levels of ytterbium atom. Laser Phys
10:133–138
37. Buyadzhi VV, Chernyakova YuG, Smirnov AV, Tkach TB (2016) Electron-collisional
spectroscopy of atoms and ions in plasma: Be-like ions. Photoelectronics 25:97–101
38. Buyadzh VV, Chernyakova YuG, Antoshkina OA, Tkach TB (2017) Spectroscopy of
multicharged ions in plasmas: oscillator strengths of Be-like ion Fe. Photoelectronics
26:94–102
39. Laughlin C, Victor GA (1989) Model-potential methods. Adv Atom Mol Phys 25:163
40. Cheng K, Kim Y, Desclaux J (1979) Electric dipole, quadrupole, and magnetic dipole transition
probabilities of ions isoelectronic to the first-row atoms, Li through F. Atom Data Nucl Data
Tabl 24:111
41. Indelicato P, Desclaux JP (1993) Projection operator in the multiconfiguration Dirac-Fock
method. Phys Scr 46:110
42. Bieron J, Pyykkö P, Jonsson P (2005) Nuclear quadrupole moment of 201 Hg. Phys Rev A
7:012502
43. Lund AP, Ralph TC (2005) Coherent-state linear optical quantum computing gates using
simplified diagonal superposition resource states. Phys Rev A 71:032502
44. Feller D, Davidson ER (1989) An approximation to frozen natural orbitals through the use of
the Hartree-Fock exchange potential. J Chem Phys 74:3977–3979
45. Dietz K, Heß BA (1989) Single particle orbitals for configuration interaction derived from
quantum electrodynamics. Phys Scr 39:682–688
46. Glushkov AV, Malinovskaya SV, Filatov VV (1989) S-Matrix formalism calculation of atomic
transition probabilities with inclusion of polarization effects. Sov Phys J 32(12):1010–1014
47. Khetselius OY (2008) Relativistic calculating the spectral lines hyperfine structure parameters
for heavy ions. AIP Conf Proc 1058:363–365
48. Glushkov AV, Lovett L, Khetselius OY, Gurnitskaya EP, Dubrovskaya YuV, 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 Mod Phys A 24(2–3):611–615
49. 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
A. V. Glushkov
26. Klose JZ, Fuhr JR, Wiese WL (2002) Critically evaluated atomic transition probabilities for
Ba I and Ba II. J Phys Chem Ref Data 31:217–230
27. Bokor J, Freeman R, Cooke W (1982) Autoionization—pumped laser. Phys Rev Lett 48:1242–
1247
28. De Graaff RJ, Ubachs W, Hogervorst W (1992) 4fnf doubly excited autoioinizing states in
Barium. Phys Rev 45(1):166–178
29. Nicolaides CA (1992) Hole-projection, saddle points and localization in the theory of
autoionizing states. Phys Rev A 46:690–698
30. Nicolaides CA, Piangos NA (2001) State-specific approach and computation of resonance
states. Identification and properties of the lowest 2 P o and 2D triply excited states of He − .
Phys Rev A 64:052505
31. Nikitin SI, Ostrovsky VN (1980) The autoionization of high Rydberg atomic states with large
orbital momentum. J Phys B: Atom Mol Opt Phys 13:1961–1984
32. Yi Jong-hoon, Lee J, Kong HJ (1995) Autoionizing states of the ytterbium atom by threephoton polarization spectroscopy. Phys Rev A 51:3053–3057
33. Yi J, Park H, Lee J (2001) Investigation of even parity autoionizing states of Ytterbium atom
by two-photon ionization spectroscopy. J Korean Phys Soc 39:916–920
34. Bylicki M (1998) Methods involving complex coordinates applied to atoms. Adv Quant Chem
32:207–226
35. Poirier M (1997) Analysis of correlation effects in autoionizing doubly excited states of
barium using Coulomb Green’s function. Z Phys D 39:189–193
36. Chernenko AA, Beterov IM, Permyakova OI (2000) Modeling of amplification without inversion near transitions from autoionization levels of ytterbium atom. Laser Phys
10:133–138
37. Buyadzhi VV, Chernyakova YuG, Smirnov AV, Tkach TB (2016) Electron-collisional
spectroscopy of atoms and ions in plasma: Be-like ions. Photoelectronics 25:97–101
38. Buyadzh VV, Chernyakova YuG, Antoshkina OA, Tkach TB (2017) Spectroscopy of
multicharged ions in plasmas: oscillator strengths of Be-like ion Fe. Photoelectronics
26:94–102
39. Laughlin C, Victor GA (1989) Model-potential methods. Adv Atom Mol Phys 25:163
40. Cheng K, Kim Y, Desclaux J (1979) Electric dipole, quadrupole, and magnetic dipole transition
probabilities of ions isoelectronic to the first-row atoms, Li through F. Atom Data Nucl Data
Tabl 24:111
41. Indelicato P, Desclaux JP (1993) Projection operator in the multiconfiguration Dirac-Fock
method. Phys Scr 46:110
42. Bieron J, Pyykkö P, Jonsson P (2005) Nuclear quadrupole moment of 201 Hg. Phys Rev A
7:012502
43. Lund AP, Ralph TC (2005) Coherent-state linear optical quantum computing gates using
simplified diagonal superposition resource states. Phys Rev A 71:032502
44. Feller D, Davidson ER (1989) An approximation to frozen natural orbitals through the use of
the Hartree-Fock exchange potential. J Chem Phys 74:3977–3979
45. Dietz K, Heß BA (1989) Single particle orbitals for configuration interaction derived from
quantum electrodynamics. Phys Scr 39:682–688
46. Glushkov AV, Malinovskaya SV, Filatov VV (1989) S-Matrix formalism calculation of atomic
transition probabilities with inclusion of polarization effects. Sov Phys J 32(12):1010–1014
47. Khetselius OY (2008) Relativistic calculating the spectral lines hyperfine structure parameters
for heavy ions. AIP Conf Proc 1058:363–365
48. Glushkov AV, Lovett L, Khetselius OY, Gurnitskaya EP, Dubrovskaya YuV, 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 Mod Phys A 24(2–3):611–615
49. 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
