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32. Glushkov AV, Ambrosov SV, Loboda AV, Svinarenko AA, Chernyakova Yu, Khetselius OY
(2004) QED calculation of the super heavy elements ions: energy levels, radiative corrections
and hfs for different nuclear models. Nucl Phys A: Nucl and Hadr Phys 734:21–28
33. Kuchiev MY, Flambaum VV (2003) Radiative corrections to parity nonconservation in atoms
and test of the standard model. J Phys B 36:R191–222
34. Mohr PJ (1982) Self-energy of the n = 2 states in a strong Coulomb field. Phys Rev A
26:2338–2354
35. Flambaum VV, Ginges JS (2005) Radiative potential and calculations of QED radiative corrections to energy levels and electromagnetic amplitudes in many-electron atoms. Phys Rev
A 72:052115
36. Serot BD, Walecka JD (1986) Advances in nuclear physics. The relativistic nuclear many
body problem, vol 16. Plenum Press, New York
37. Burvenich TJ, Evers J, Keitel CH (2006) Dynamic nuclear Stark shift in superintense laser
fields. Phys Rev C 74:044601
38. Kohn W, Sham LJ (1965) Self-consistent equations including exchange and correlation effects.
Phys Rev A 140:1133
39. Ivanov LN, Ivanova EP, Aglitsky EV (1988) Modern trends in the spectroscopy of
multicharged ions. Phys Rep 166:315–388
40. Glushkov AV, Ambrosov SV, Loboda AV, Gurnitskaya EP, Khetselius OY (2005) QED calculation of heavy multicharged ions with account for correlation, radiative and nuclear effects.
In: Julien J-P, Maruani J, Mayou D, Wilson S, Delgado-Barion G (eds) Recent Advances in
the Theory of Chemical and Physical Systems. Series: Progress in Theoretical Chemistry and
Physics, vol 15. Springer, Dordrecht, pp 285–299
41. Glushkov AV, Svinarenko AA, Ignatenko AV (2011) Spectroscopy of autoionization resonances in spectra of the lanthanides atoms. Photoelectronics 20:90–94
42. Glushkov AV, Khetselius OY, Dubrovskaya YV, Loboda AV (2006) Sensing the capture of
negative muon by atoms: Energy approach. Sens Electron Microsyst Technol N3:31–35
43. Khetselius OY (2008) On possibility of sensing nuclei of the rare isotopes by means of laser
spectroscopy of hyperfine structure. Sens Electron Microsyst Technol N3:28–33
44. Khetselius OY (2009) Relativistic calculating the hyperfine structure parameters for heavyelements and laser detecting the isotopes and nuclear reaction products. Phys Scripta T
135:014023
45. Khetselius OY (2009) On sensing nuclei of the 207Bi & 207Pb isotopes by means of laser
spectroscopy of hyperfine. Sens Electron Microsyst Technol N2:26–29
46. Khetselius OY (2009) Relativistic perturbation theory calculation of the hyperfine structure
parameters for some heavy-element isotopes. Int J Quantum Chem 109:3330–3335
47. Khetselius OY (2012) Spectroscopy of cooperative electron-gamma-nuclear processes in
heavy atoms: NEET effect. J Phys: Conf Ser 397:012012
48. Glushkov AV (2006) Relativistic and correlation effects in spectra of atomic systems.
Astroprint, Odessa
49. 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: Progress in Methods and Applications. Series: Progress inTheoretical Chemistry and Physics, vol 26. Springer, Dordrecht, pp
217–229
50. Glushkov AV, Rusov VD, Ambrosov SV, Loboda AV (2003) Resonance states of compound
super-heavy nucleus and EPPP in heavy nucleus collisions. In: Fazio G, Hanappe F (eds)
New projects and new lines of research in nuclear physics. World Scientific, Singapore, pp
126–132
51. 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 et al (eds)
Low energy antiproton physics. AIP Conf Proc, New York, 796:206–210
52. Glushkov AV (2012) Spectroscopy of cooperative muon-gamma-nuclear processes: energy
and spectral parameters. J Phys: Conf Ser 397:012011
77
32. Glushkov AV, Ambrosov SV, Loboda AV, Svinarenko AA, Chernyakova Yu, Khetselius OY
(2004) QED calculation of the super heavy elements ions: energy levels, radiative corrections
and hfs for different nuclear models. Nucl Phys A: Nucl and Hadr Phys 734:21–28
33. Kuchiev MY, Flambaum VV (2003) Radiative corrections to parity nonconservation in atoms
and test of the standard model. J Phys B 36:R191–222
34. Mohr PJ (1982) Self-energy of the n = 2 states in a strong Coulomb field. Phys Rev A
26:2338–2354
35. Flambaum VV, Ginges JS (2005) Radiative potential and calculations of QED radiative corrections to energy levels and electromagnetic amplitudes in many-electron atoms. Phys Rev
A 72:052115
36. Serot BD, Walecka JD (1986) Advances in nuclear physics. The relativistic nuclear many
body problem, vol 16. Plenum Press, New York
37. Burvenich TJ, Evers J, Keitel CH (2006) Dynamic nuclear Stark shift in superintense laser
fields. Phys Rev C 74:044601
38. Kohn W, Sham LJ (1965) Self-consistent equations including exchange and correlation effects.
Phys Rev A 140:1133
39. Ivanov LN, Ivanova EP, Aglitsky EV (1988) Modern trends in the spectroscopy of
multicharged ions. Phys Rep 166:315–388
40. Glushkov AV, Ambrosov SV, Loboda AV, Gurnitskaya EP, Khetselius OY (2005) QED calculation of heavy multicharged ions with account for correlation, radiative and nuclear effects.
In: Julien J-P, Maruani J, Mayou D, Wilson S, Delgado-Barion G (eds) Recent Advances in
the Theory of Chemical and Physical Systems. Series: Progress in Theoretical Chemistry and
Physics, vol 15. Springer, Dordrecht, pp 285–299
41. Glushkov AV, Svinarenko AA, Ignatenko AV (2011) Spectroscopy of autoionization resonances in spectra of the lanthanides atoms. Photoelectronics 20:90–94
42. Glushkov AV, Khetselius OY, Dubrovskaya YV, Loboda AV (2006) Sensing the capture of
negative muon by atoms: Energy approach. Sens Electron Microsyst Technol N3:31–35
43. Khetselius OY (2008) On possibility of sensing nuclei of the rare isotopes by means of laser
spectroscopy of hyperfine structure. Sens Electron Microsyst Technol N3:28–33
44. Khetselius OY (2009) Relativistic calculating the hyperfine structure parameters for heavyelements and laser detecting the isotopes and nuclear reaction products. Phys Scripta T
135:014023
45. Khetselius OY (2009) On sensing nuclei of the 207Bi & 207Pb isotopes by means of laser
spectroscopy of hyperfine. Sens Electron Microsyst Technol N2:26–29
46. Khetselius OY (2009) Relativistic perturbation theory calculation of the hyperfine structure
parameters for some heavy-element isotopes. Int J Quantum Chem 109:3330–3335
47. Khetselius OY (2012) Spectroscopy of cooperative electron-gamma-nuclear processes in
heavy atoms: NEET effect. J Phys: Conf Ser 397:012012
48. Glushkov AV (2006) Relativistic and correlation effects in spectra of atomic systems.
Astroprint, Odessa
49. 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: Progress in Methods and Applications. Series: Progress inTheoretical Chemistry and Physics, vol 26. Springer, Dordrecht, pp
217–229
50. Glushkov AV, Rusov VD, Ambrosov SV, Loboda AV (2003) Resonance states of compound
super-heavy nucleus and EPPP in heavy nucleus collisions. In: Fazio G, Hanappe F (eds)
New projects and new lines of research in nuclear physics. World Scientific, Singapore, pp
126–132
51. 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 et al (eds)
Low energy antiproton physics. AIP Conf Proc, New York, 796:206–210
52. Glushkov AV (2012) Spectroscopy of cooperative muon-gamma-nuclear processes: energy
and spectral parameters. J Phys: Conf Ser 397:012011
