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67. Malinovskaya SV, Glushkov AV, Khetselius OY (2008) New laser-electron nuclear effects
in the nuclear γ transition spectra in atomic and molecular systems. In: Wilson S, Grout P,
Maruani J, Delgado-Barrio G, Piecuch P (eds) Frontiers in quantum systems in chemistry and
physics. Series: Progress in Theoretical Chemistry and Physics, vol 18. Springer, Dordrecht,
pp 525–541
68. Glushkov AV, Khetselius OY, Malinovskaya SV (2008) Optics and spectroscopy of cooperative laser-electron nuclear processes in atomic and molecular systems—new trend in quantum
optics. Eur Phys J ST 160:195–204
69. Glushkov AV, Malinovskaya SV, Gurnitskaya EP, Khetselius OY, Dubrovskaya YV (2006)
Consistent quantum theory of recoil induced excitation and ionization in atoms during capture
of neutron. J Phys: Conf Ser 35:425–430
70. Glushkov AV, Ambrosov SV, Lobod AV, Gurnitskaya EP, Prepelitsa GP (2005) Consistent
QED approach to calculation of electron-collision excitation cross sections and strengths:
Ne-like ions. Int J Quant Chem 104:562–569
71. Glushkov AV, Shpinareva IM, Ignatenko V, Gura VI (2006) Study of atomic systems in strong
laser fields: spectral hierarchy, dynamical stabilisation and generation of ultra-short vuv and
x-ray pulses. Sens Electr Microsyst Tech 3(1):29–35
72. Glushkov AV (2005) 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 206–210 (AIP
Conf. Proc.)
73. Glushkov AV (2012) Spectroscopy of cooperative muon-gamma-nuclear processes: energy
and spectral parameters. J Phys: Conf Ser 397:012011
74. Glushkov AV (2014) Spectroscopy of atom and nucleus in a strong laser field: Stark effect
and multiphoton resonances. J Phys: Conf Ser 548:012020
75. Khetselius OY (2012) Spectroscopy of cooperative electron-gamma-nuclear processes in
heavy atoms: NEET effect. J Phys: Conf Ser 397:012012
76. Khetselius OY (2012) Relativistic energy approach to cooperative electron-γ-nuclear processes: NEET effect. In: Nishikawa K, Maruani J, Brändas E, Delgado-Barrio G, Piecuch P
(eds) Quantum systems in chemistry and physics. series: progress in theoretical chemistry
and physics, vol 26. Springer, Dordrecht, pp 217–229
77. Khetselius OY (2012) Quantum geometry: new approach to quantization of the quasistationary
states of Dirac equation for super heavy ion and calculating hyper fine structure parameters.
Proc Intern Geom Cent 5(3–4):39–45
78. Khetselius OY (2008) Hyperfine structure of atomic spectra. Astroprint, Odessa
79. Glushkov AV (1992) Oscillator strengths of Cs and Rb-like ions. J Appl Spectrosc 56(1):5–9
80. Glushkov AV (1992) Negative ions of inert gases. JETP Lett 55:97–100
81. Glushkov AV (1990) Relativistic polarization potential of a many-electron atom. Sov Phys J
33(1):1–4
82. Glushkov AV, Ivanov LN (1993) DC strong-field Stark effect: consistent quantum-mechanical
approach. J Phys B: At Mol Opt Phys 26:L379–L386
83. Glushkov AV (2013) Operator perturbation theory for atomic systems in a strong DC electric
field. In: Hotokka M, Brändas E, Maruani J, Delgado-Barrio G (eds) Advances in quantum
methods and applications in chemistry, physics, and biology. Series: Progress in Theoretical
Chemistry and Physics, vol 27. Springer, Cham, pp 161–177
84. Glushkov AV, Malinovskaya SV, Ambrosov SV, Shpinareva IM, Troitskaya OV (1997) Resonances in quantum systems in strong external fields consistent quantum approach. J Techn
Phys 38(2):215–218
85. Glushkov AV, Khetselius OY, Malinovskaya SV (2008) Spectroscopy of cooperative laserelectron nuclear effects in multiatomic molecules. Mol Phys 106:1257–1260
86. Glushkov AV (2006) Relativistic and correlation effects in spectra of atomic systems.
Astroprint, Odessa
87. Khetselius OY (2011) Quantum structure of electroweak interaction in heavy finite Fermisystems. Astroprint, Odessa
A. V. Glushkov et al.
67. Malinovskaya SV, Glushkov AV, Khetselius OY (2008) New laser-electron nuclear effects
in the nuclear γ transition spectra in atomic and molecular systems. In: Wilson S, Grout P,
Maruani J, Delgado-Barrio G, Piecuch P (eds) Frontiers in quantum systems in chemistry and
physics. Series: Progress in Theoretical Chemistry and Physics, vol 18. Springer, Dordrecht,
pp 525–541
68. Glushkov AV, Khetselius OY, Malinovskaya SV (2008) Optics and spectroscopy of cooperative laser-electron nuclear processes in atomic and molecular systems—new trend in quantum
optics. Eur Phys J ST 160:195–204
69. Glushkov AV, Malinovskaya SV, Gurnitskaya EP, Khetselius OY, Dubrovskaya YV (2006)
Consistent quantum theory of recoil induced excitation and ionization in atoms during capture
of neutron. J Phys: Conf Ser 35:425–430
70. Glushkov AV, Ambrosov SV, Lobod AV, Gurnitskaya EP, Prepelitsa GP (2005) Consistent
QED approach to calculation of electron-collision excitation cross sections and strengths:
Ne-like ions. Int J Quant Chem 104:562–569
71. Glushkov AV, Shpinareva IM, Ignatenko V, Gura VI (2006) Study of atomic systems in strong
laser fields: spectral hierarchy, dynamical stabilisation and generation of ultra-short vuv and
x-ray pulses. Sens Electr Microsyst Tech 3(1):29–35
72. Glushkov AV (2005) 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 206–210 (AIP
Conf. Proc.)
73. Glushkov AV (2012) Spectroscopy of cooperative muon-gamma-nuclear processes: energy
and spectral parameters. J Phys: Conf Ser 397:012011
74. Glushkov AV (2014) Spectroscopy of atom and nucleus in a strong laser field: Stark effect
and multiphoton resonances. J Phys: Conf Ser 548:012020
75. Khetselius OY (2012) Spectroscopy of cooperative electron-gamma-nuclear processes in
heavy atoms: NEET effect. J Phys: Conf Ser 397:012012
76. Khetselius OY (2012) Relativistic energy approach to cooperative electron-γ-nuclear processes: NEET effect. In: Nishikawa K, Maruani J, Brändas E, Delgado-Barrio G, Piecuch P
(eds) Quantum systems in chemistry and physics. series: progress in theoretical chemistry
and physics, vol 26. Springer, Dordrecht, pp 217–229
77. Khetselius OY (2012) Quantum geometry: new approach to quantization of the quasistationary
states of Dirac equation for super heavy ion and calculating hyper fine structure parameters.
Proc Intern Geom Cent 5(3–4):39–45
78. Khetselius OY (2008) Hyperfine structure of atomic spectra. Astroprint, Odessa
79. Glushkov AV (1992) Oscillator strengths of Cs and Rb-like ions. J Appl Spectrosc 56(1):5–9
80. Glushkov AV (1992) Negative ions of inert gases. JETP Lett 55:97–100
81. Glushkov AV (1990) Relativistic polarization potential of a many-electron atom. Sov Phys J
33(1):1–4
82. Glushkov AV, Ivanov LN (1993) DC strong-field Stark effect: consistent quantum-mechanical
approach. J Phys B: At Mol Opt Phys 26:L379–L386
83. Glushkov AV (2013) Operator perturbation theory for atomic systems in a strong DC electric
field. In: Hotokka M, Brändas E, Maruani J, Delgado-Barrio G (eds) Advances in quantum
methods and applications in chemistry, physics, and biology. Series: Progress in Theoretical
Chemistry and Physics, vol 27. Springer, Cham, pp 161–177
84. Glushkov AV, Malinovskaya SV, Ambrosov SV, Shpinareva IM, Troitskaya OV (1997) Resonances in quantum systems in strong external fields consistent quantum approach. J Techn
Phys 38(2):215–218
85. Glushkov AV, Khetselius OY, Malinovskaya SV (2008) Spectroscopy of cooperative laserelectron nuclear effects in multiatomic molecules. Mol Phys 106:1257–1260
86. Glushkov AV (2006) Relativistic and correlation effects in spectra of atomic systems.
Astroprint, Odessa
87. Khetselius OY (2011) Quantum structure of electroweak interaction in heavy finite Fermisystems. Astroprint, Odessa
