Relativistic Quantum Chemistry and Spectroscopy of Kaonic Atomic Systems …
49
120. Glushkov AV, Efimov VA, Gopchenko ED, Dan’kov SV, Polishchyuk VN, Goloshchak OP
(1998) Calculation of spectroscopic characteristics 4 of alkali-metal dimers on the basis of a
model perturbation theory. Optics Spectr 84(5):670–678
121. Buyadzhi VV (2015) Laser multiphoton spectroscopy of atom embedded in debye plasmas:
multiphoton resonances and transitions. Photoelectronics 24:128–133
122. Glushkov AV, Ambrosov SV, Loboda 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(4):562–569
123. Svinarenko AA, Nikola LV, Prepelitsa GP, Tkach TB, Mischenk EV (2010) The Auger
(autoionization) decay of excited states in spectra of multicharged ions: relativistic theory.
AIP Conf Proc 1290:94–98
124. Glushkov AV, Svinarenko AA, Ignatenko AV (2011) Spectroscopy of autoionization resonances in spectra of the lanthanides atoms. Photoelectronics 20:90–94
125. Glushkov AV, Ambrosov SV, Ignatenko AV (2001) Non-hydrogenic atoms and Wannier-Mott
excitons in a DC electric field: photoionization, stark effect, resonances in continuum and
stochasticity. Photoelectronics 10:103–106
126. Khetselius OY (2019) Optimized relativistic many-body perturbation theory calculation of
wavelengths and oscillator strengths for Li-like multicharged ions. Advances in quantum
chemistry, vol 78, Elsevier, Amsterdam, pp 223–251. https://doi.org/10.1016/bs.aiq.2018.
06.001
127. Glushkov AV (2019) Multiphoton spectroscopy of atoms and nuclei in a laser field: relativistic
energy approach and radiation atomic lines moments method. Advances in quantum chemistry,
vol 78. Elsevier, Amsterdam, pp 253–285. https://doi.org/10.1016/bs.aiq.2018.06.004
128. Kuznetsova AA, Glushkov AV, Ignatenko AV, Svinarenko AA, Ternovsky VB (2019) Spectroscopy of multielectron atomic system in a DC electric field. Advances in quantum
chemistry, vol 78. Elsevier, Amsterdam, pp 287–306
129. Ignatenko AV, Buyadzhi AA, Buyadzhi VV, Kuznetsova AA, Mashkantsev AA, Ternovsky
EV (2019) Nonlinear chaotic dynamics of quantum systems: molecules in an electromagnetic
field. Adv Quantum Chem 78:149–170
130. Glushkov AV, Gurskaya MYu, 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 905:012004
131. Malinovskaya SV, Dubrovskaya Yu, Zelentzova TN (2004) The atomic chemical environment
effect on the β decay probabilities: relativistic calculation. Herald Kiev Nat Univ Ser PhysMath 4:427–432
132. Glushkov AV, Malinovskaya SV, Dubrovskaya YV (2005) Sensing the atomic chemical composition effect on the beta decay probabilities. Sensor Electr Microsyst Technol
2(1):16–20
133. 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
134. Glushkov AV, Svinarenko AA, Khetselius OY, Buyadzhi VV, Florko TA, Shakhman AN
(2015) Relativistic quantum chemistry: an advanced approach to the construction of the
green function of the Dirac equation with complex energy and mean-field nuclear potential. In: Nascimento M, Maruani J, Brändas E, Delgado-Barrio G (eds) Frontiers in quantum
methods and applications in chemistry and physics. Series: progress in theoretical chemistry
and physics, vol 29. Springer, Cham, pp 197–217
135. Glushkov AV, Khetselius OY, Svinarenko AA, Buyadzhi VV (2015) Spectroscopy of
autoionization states of heavy atoms and multiply charged ions. TEC, Odessa
136. 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 Modern Phys A 24(2–3):611–615
49
120. Glushkov AV, Efimov VA, Gopchenko ED, Dan’kov SV, Polishchyuk VN, Goloshchak OP
(1998) Calculation of spectroscopic characteristics 4 of alkali-metal dimers on the basis of a
model perturbation theory. Optics Spectr 84(5):670–678
121. Buyadzhi VV (2015) Laser multiphoton spectroscopy of atom embedded in debye plasmas:
multiphoton resonances and transitions. Photoelectronics 24:128–133
122. Glushkov AV, Ambrosov SV, Loboda 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(4):562–569
123. Svinarenko AA, Nikola LV, Prepelitsa GP, Tkach TB, Mischenk EV (2010) The Auger
(autoionization) decay of excited states in spectra of multicharged ions: relativistic theory.
AIP Conf Proc 1290:94–98
124. Glushkov AV, Svinarenko AA, Ignatenko AV (2011) Spectroscopy of autoionization resonances in spectra of the lanthanides atoms. Photoelectronics 20:90–94
125. Glushkov AV, Ambrosov SV, Ignatenko AV (2001) Non-hydrogenic atoms and Wannier-Mott
excitons in a DC electric field: photoionization, stark effect, resonances in continuum and
stochasticity. Photoelectronics 10:103–106
126. Khetselius OY (2019) Optimized relativistic many-body perturbation theory calculation of
wavelengths and oscillator strengths for Li-like multicharged ions. Advances in quantum
chemistry, vol 78, Elsevier, Amsterdam, pp 223–251. https://doi.org/10.1016/bs.aiq.2018.
06.001
127. Glushkov AV (2019) Multiphoton spectroscopy of atoms and nuclei in a laser field: relativistic
energy approach and radiation atomic lines moments method. Advances in quantum chemistry,
vol 78. Elsevier, Amsterdam, pp 253–285. https://doi.org/10.1016/bs.aiq.2018.06.004
128. Kuznetsova AA, Glushkov AV, Ignatenko AV, Svinarenko AA, Ternovsky VB (2019) Spectroscopy of multielectron atomic system in a DC electric field. Advances in quantum
chemistry, vol 78. Elsevier, Amsterdam, pp 287–306
129. Ignatenko AV, Buyadzhi AA, Buyadzhi VV, Kuznetsova AA, Mashkantsev AA, Ternovsky
EV (2019) Nonlinear chaotic dynamics of quantum systems: molecules in an electromagnetic
field. Adv Quantum Chem 78:149–170
130. Glushkov AV, Gurskaya MYu, 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 905:012004
131. Malinovskaya SV, Dubrovskaya Yu, Zelentzova TN (2004) The atomic chemical environment
effect on the β decay probabilities: relativistic calculation. Herald Kiev Nat Univ Ser PhysMath 4:427–432
132. Glushkov AV, Malinovskaya SV, Dubrovskaya YV (2005) Sensing the atomic chemical composition effect on the beta decay probabilities. Sensor Electr Microsyst Technol
2(1):16–20
133. 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
134. Glushkov AV, Svinarenko AA, Khetselius OY, Buyadzhi VV, Florko TA, Shakhman AN
(2015) Relativistic quantum chemistry: an advanced approach to the construction of the
green function of the Dirac equation with complex energy and mean-field nuclear potential. In: Nascimento M, Maruani J, Brändas E, Delgado-Barrio G (eds) Frontiers in quantum
methods and applications in chemistry and physics. Series: progress in theoretical chemistry
and physics, vol 29. Springer, Cham, pp 197–217
135. Glushkov AV, Khetselius OY, Svinarenko AA, Buyadzhi VV (2015) Spectroscopy of
autoionization states of heavy atoms and multiply charged ions. TEC, Odessa
136. 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 Modern Phys A 24(2–3):611–615
