48
O. Yu. Khetselius et al.
101. Glushkov AV (2008) QED theory of radiation emission and absorption lines for atoms and
ions in a strong laser field. AIP Conf Proc 1058:134–136
102. Glushkov AV, Loboda AV (2007) Calculation of the characteristics of radiative multiphoton
absorption and emission lines when an atom interacts with pulsed laser radiation. J Appl
Spectr 74:305–309
103. Glushkov AV (2014) Spectroscopy of atom and nucleus in a strong laser field: stark effect
and multiphoton resonances. J Phys Conf Ser 548:012020
104. Glushkov AV (2012) Advanced relativistic energy approach to radiative decay processes in
multielectron atoms and multicharged ions. In: Nishikawa K, Maruani J, Brändas E, DelgadoBarrio G, Piecuch P (eds) Quantum systems in chemistry and physics: progress in methods and
applications. series: progress in theoretical chemistry and physics, vol 26. Springer, Dordrecht,
pp 231–252
105. 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
106. Glushkov AV, Malinovskaya SV, Loboda AV, Shpinareva IM, Gurnitskaya EP, Korchevsky
DA (2005) Diagnostics of the collisionally pumped plasma and search of the optimal plasma
parameters of x-ray lasing: calculation of electron-collision strengths and rate coefficients for
Ne-like plasma. J Phys Conf Ser 11:188–198
107. Glushkov AV, Malinovskaya SV, Chernyakova YuG, Svinarenko AA (2004) Cooperative laserelectron-nuclear processes: QED calculation of electron satellites spectra for multi-charged
ion in laser field. Int J Quant Chem 99(5):889–893
108. Glushkov AV, Ambrosov SV, Ignatenko AV, Korchevsky DA (2004) DC strong field stark
effect for non-hydrogenic atoms: new consistent quantum mechanical approach. Int J Quant
Chem 99(5):936–939
109. Glushkov AV, Malinovskaya SV, Loboda AV, Shpinareva IM, Prepelitsa GP (2006) Consistent
quantum approach to new laser-electron-nuclear effects in diatomic molecules. J Phys Conf
Ser 35:420–424
110. Glushkov AV, Kondratenko PA, Buyadgi VV, Kvasikova AS, Sakun TN, Shakhman AN (2014)
Spectroscopy of cooperative laser electron-γ-nuclear processes in polyatomic molecules. J
Phys Conf Ser 548:012025
111. Malinovskay SV, Glushkov AV (1992) Calculation of the spectra of potassium-like multicharged ions. Russian Phys J 35(11):999–1004
112. Glushkov AV, Butenko YuV, Serbov NG, Ambrosov SV, Orlova VE, Orlov SV, Balan AK,
Dormostuchenko GM (1996) Calculation of the oscillator strengths in Fr-like multiply charged
ions. J Appl Spectrosc 63(1):28–30
113. Buyadzhi VV, Glushkov AV, Lovett L (2014) Spectroscopy of atoms and nuclei in a strong
laser field: Ac Stark effect and multiphoton resonances. Photoelectronics 23:38–43
114. Glushkov AV, Kondratenko PA, Lepikh YI, Fedchuk AP, Svinarenko AA, Lovett L
(2009) Electrodynamical and quantum-chemical approaches to modelling the electrochemical ancatalytic processes on metals, metal alloys and semiconductors. Int J Quant Chem
109(14):3473–3481
115. 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 397:012037
116. Khetselius OYu (2012) Spectroscopy of cooperative electron-gamma-nuclear processes in
heavy atoms: NEET effect. J Phys: Conf Ser 397:012012
117. Glushkov AV, Malinovskaya SV, Prepelitsa GP, Ignatenko VM (2005) Manifestation of the
new laser-electron nuclear spectral effects in the thermalized plasma: QED theory of cooperative laser-electron-nuclear processes. J Phys Conf Ser 11:199–206
118. Glushkov AV (1988) True effective molecular valency hamiltonian in a logical semiempricial
theory. J Struct Chem 29(4):495–501
119. Glushkov AV (1990) Correction for exchange and correlation effects in multielectron system
theory. J Struct Chem 31(4):529–532
O. Yu. Khetselius et al.
101. Glushkov AV (2008) QED theory of radiation emission and absorption lines for atoms and
ions in a strong laser field. AIP Conf Proc 1058:134–136
102. Glushkov AV, Loboda AV (2007) Calculation of the characteristics of radiative multiphoton
absorption and emission lines when an atom interacts with pulsed laser radiation. J Appl
Spectr 74:305–309
103. Glushkov AV (2014) Spectroscopy of atom and nucleus in a strong laser field: stark effect
and multiphoton resonances. J Phys Conf Ser 548:012020
104. Glushkov AV (2012) Advanced relativistic energy approach to radiative decay processes in
multielectron atoms and multicharged ions. In: Nishikawa K, Maruani J, Brändas E, DelgadoBarrio G, Piecuch P (eds) Quantum systems in chemistry and physics: progress in methods and
applications. series: progress in theoretical chemistry and physics, vol 26. Springer, Dordrecht,
pp 231–252
105. 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
106. Glushkov AV, Malinovskaya SV, Loboda AV, Shpinareva IM, Gurnitskaya EP, Korchevsky
DA (2005) Diagnostics of the collisionally pumped plasma and search of the optimal plasma
parameters of x-ray lasing: calculation of electron-collision strengths and rate coefficients for
Ne-like plasma. J Phys Conf Ser 11:188–198
107. Glushkov AV, Malinovskaya SV, Chernyakova YuG, Svinarenko AA (2004) Cooperative laserelectron-nuclear processes: QED calculation of electron satellites spectra for multi-charged
ion in laser field. Int J Quant Chem 99(5):889–893
108. Glushkov AV, Ambrosov SV, Ignatenko AV, Korchevsky DA (2004) DC strong field stark
effect for non-hydrogenic atoms: new consistent quantum mechanical approach. Int J Quant
Chem 99(5):936–939
109. Glushkov AV, Malinovskaya SV, Loboda AV, Shpinareva IM, Prepelitsa GP (2006) Consistent
quantum approach to new laser-electron-nuclear effects in diatomic molecules. J Phys Conf
Ser 35:420–424
110. Glushkov AV, Kondratenko PA, Buyadgi VV, Kvasikova AS, Sakun TN, Shakhman AN (2014)
Spectroscopy of cooperative laser electron-γ-nuclear processes in polyatomic molecules. J
Phys Conf Ser 548:012025
111. Malinovskay SV, Glushkov AV (1992) Calculation of the spectra of potassium-like multicharged ions. Russian Phys J 35(11):999–1004
112. Glushkov AV, Butenko YuV, Serbov NG, Ambrosov SV, Orlova VE, Orlov SV, Balan AK,
Dormostuchenko GM (1996) Calculation of the oscillator strengths in Fr-like multiply charged
ions. J Appl Spectrosc 63(1):28–30
113. Buyadzhi VV, Glushkov AV, Lovett L (2014) Spectroscopy of atoms and nuclei in a strong
laser field: Ac Stark effect and multiphoton resonances. Photoelectronics 23:38–43
114. Glushkov AV, Kondratenko PA, Lepikh YI, Fedchuk AP, Svinarenko AA, Lovett L
(2009) Electrodynamical and quantum-chemical approaches to modelling the electrochemical ancatalytic processes on metals, metal alloys and semiconductors. Int J Quant Chem
109(14):3473–3481
115. 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 397:012037
116. Khetselius OYu (2012) Spectroscopy of cooperative electron-gamma-nuclear processes in
heavy atoms: NEET effect. J Phys: Conf Ser 397:012012
117. Glushkov AV, Malinovskaya SV, Prepelitsa GP, Ignatenko VM (2005) Manifestation of the
new laser-electron nuclear spectral effects in the thermalized plasma: QED theory of cooperative laser-electron-nuclear processes. J Phys Conf Ser 11:199–206
118. Glushkov AV (1988) True effective molecular valency hamiltonian in a logical semiempricial
theory. J Struct Chem 29(4):495–501
119. Glushkov AV (1990) Correction for exchange and correlation effects in multielectron system
theory. J Struct Chem 31(4):529–532
