100
T. Szidarovszky et al.
25. A. Sanli, X. Pan, S. Magnier, J. Huennekens, A.M. Lyyra, E.H. Ahmed, Measurement of the
Na 2 5 1 σ +
g →A 1 σ +
u and 6 1 σ +
g →A 1 σ +
u transition dipole moments using optical-optical double
resonance and Autler-Townes spectroscopy. J. Chem. Phys. 147(20), 204301 (2017)
26. E.H. Ahmed, J. Huennekens, T. Kirova, J. Qi, A.M. Lyyra, The Autler-Townes effect in
molecules: observations, theory, and applications. Adv. At., Mol., Opt. Phys. 61, 467–514
(2012)
27. C.Y. Lee, B.H. Pate, Dressed states of molecules and microwave-infrared double-resonance
spectroscopic techniques employing an electric quadrupole focusing field. J. Chem. Phys.
107(24), 10430–10439 (1997)
28. G.J. Halász, Á. Vibók, M. Šindelka, N. Moiseyev, L.S. Cederbaum, Conical intersections
induced by light: Berry phase and wavepacket dynamics. J. Phys. B 44(17), 175102 (2011)
29. G.J. Halász, M. Šindelka, N. Moiseyev, L.S. Cederbaum, Á. Vibók, Light-induced conical
intersections: topological phase, wave packet dynamics, and molecular alignment. J. Phys.
Chem. A 116(11), 2636–2643 (2012)
30. T. Szidarovszky, G.J. Halász, A.G. Császár, L.S. Cederbaum, Á. Vibók, Direct signatures of
light-induced conical intersections on the field-dressed spectrum of Na 2 . J. Phys. Chem. Lett.
9, 2739–2745 (2018)
31. T. Szidarovszky, G.J. Halász, A.G. Császár, L.S. Cederbaum, Á. Vibók, Conical intersections
induced by quantum light: field-dressed spectra from the weak to the ultrastrong coupling
regimes. J. Phys. Chem. Lett. 9, 6215–6223 (2018)
32. T. Szidarovszky, A.G. Császár, G.J. Halász, Á. Vibók, Rovibronic spectra of molecules dressed
by light fields. Phys. Rev. A 100 (2019)
33. S.-I. Chu, D.A. Telnov, Beyond the floquet theorem: generalized Floquet formalisms and
quasienergy methods for atomic and molecular multiphoton processes in intense laser fields.
Phys. Rep. 390(1), 1–131 (2004)
34. S.-I. Chu, Recent developments in semiclassical Floquet theories for intense-field multiphoton
processes, in Advances in Atomic and Molecular Physics (Elsevier, Amsterdam, 1985), pp. 197–
253
35. S. Guérin, H.R. Jauslin, Control of quantum dynamics by laser pulses: adiabatic Floquet theory.
Adv. Chem. Phys. 125, 147–267 (2003)
36. C. Lefebvre, T.T. Nguyen-Dang, F. Dion, M.J.J. Vrakking, V.N. Serov, O. Atabek, Attosecond
pump-probe transition-state spectroscopy of laser-induced molecular dissociative ionization:
adiabatic versus nonadiabatic dressed-state dynamics. Phys. Rev. A 88, 053416 (2013)
37. C. Fábri, R. Marquardt, A.G. Császár, M. Quack, Controlling tunneling in ammonia isotopomers. J. Chem. Phys. 150, 014102 (2019)
38. A. Leclerc, D. Viennot, G. Jolicard, R. Lefebvre, O. Atabek, Controlling vibrational cooling
with zero-width resonances: an adiabatic floquet approach. Phys. Rev. A 94, 043409 (2016)
39. P.R. Bunker, P. Jensen, Molecular Symmetry and Spectroscopy (NRC Research Press, Ottawa,
1998)
40. S. Magnier, P. Millié, O. Dulieu, F. Masnou-Seeuws, Potential curves for the ground and excited
states of the Na 2 molecule up to the (3s+5p) dissociation limit: results of two different effective
potential calculations. J. Chem. Phys. 98, 7113–7125 (1993)
41. W.T. Zemke, K.K. Verma, T. Vu, W.C. Stwalley, An investigation of radiative transition probabilities for the A 1 σ +
u -X 1 σ +
g bands of Na 2 . J. Mol. Spectrosc. 85, 150–176 (1981)
42. T. Szidarovszky, A.G. Császár, G. Czakó, On the efficiency of treating singularities in triatomic
variational vibrational computations. The vibrational states of H
+
3 up to dissociation. Phys.
Chem. Chem. Phys. 12, 8373–8386 (2010)
43. H. Xu, E. Lötstedt, A. Iwasaki, K. Yamanouchi, Sub-10-fs population inversion in N
+
2 in air
lasing through multiple state coupling. Nat. Commun. 6, 8347 (2015)
44. Y. Zhang, E. Lötstedt, K. Yamanouchi, Population inversion in a strongly driven two-level
system at far-off resonance. J. Phys. B 50, 185603 (2017)
T. Szidarovszky et al.
25. A. Sanli, X. Pan, S. Magnier, J. Huennekens, A.M. Lyyra, E.H. Ahmed, Measurement of the
Na 2 5 1 σ +
g →A 1 σ +
u and 6 1 σ +
g →A 1 σ +
u transition dipole moments using optical-optical double
resonance and Autler-Townes spectroscopy. J. Chem. Phys. 147(20), 204301 (2017)
26. E.H. Ahmed, J. Huennekens, T. Kirova, J. Qi, A.M. Lyyra, The Autler-Townes effect in
molecules: observations, theory, and applications. Adv. At., Mol., Opt. Phys. 61, 467–514
(2012)
27. C.Y. Lee, B.H. Pate, Dressed states of molecules and microwave-infrared double-resonance
spectroscopic techniques employing an electric quadrupole focusing field. J. Chem. Phys.
107(24), 10430–10439 (1997)
28. G.J. Halász, Á. Vibók, M. Šindelka, N. Moiseyev, L.S. Cederbaum, Conical intersections
induced by light: Berry phase and wavepacket dynamics. J. Phys. B 44(17), 175102 (2011)
29. G.J. Halász, M. Šindelka, N. Moiseyev, L.S. Cederbaum, Á. Vibók, Light-induced conical
intersections: topological phase, wave packet dynamics, and molecular alignment. J. Phys.
Chem. A 116(11), 2636–2643 (2012)
30. T. Szidarovszky, G.J. Halász, A.G. Császár, L.S. Cederbaum, Á. Vibók, Direct signatures of
light-induced conical intersections on the field-dressed spectrum of Na 2 . J. Phys. Chem. Lett.
9, 2739–2745 (2018)
31. T. Szidarovszky, G.J. Halász, A.G. Császár, L.S. Cederbaum, Á. Vibók, Conical intersections
induced by quantum light: field-dressed spectra from the weak to the ultrastrong coupling
regimes. J. Phys. Chem. Lett. 9, 6215–6223 (2018)
32. T. Szidarovszky, A.G. Császár, G.J. Halász, Á. Vibók, Rovibronic spectra of molecules dressed
by light fields. Phys. Rev. A 100 (2019)
33. S.-I. Chu, D.A. Telnov, Beyond the floquet theorem: generalized Floquet formalisms and
quasienergy methods for atomic and molecular multiphoton processes in intense laser fields.
Phys. Rep. 390(1), 1–131 (2004)
34. S.-I. Chu, Recent developments in semiclassical Floquet theories for intense-field multiphoton
processes, in Advances in Atomic and Molecular Physics (Elsevier, Amsterdam, 1985), pp. 197–
253
35. S. Guérin, H.R. Jauslin, Control of quantum dynamics by laser pulses: adiabatic Floquet theory.
Adv. Chem. Phys. 125, 147–267 (2003)
36. C. Lefebvre, T.T. Nguyen-Dang, F. Dion, M.J.J. Vrakking, V.N. Serov, O. Atabek, Attosecond
pump-probe transition-state spectroscopy of laser-induced molecular dissociative ionization:
adiabatic versus nonadiabatic dressed-state dynamics. Phys. Rev. A 88, 053416 (2013)
37. C. Fábri, R. Marquardt, A.G. Császár, M. Quack, Controlling tunneling in ammonia isotopomers. J. Chem. Phys. 150, 014102 (2019)
38. A. Leclerc, D. Viennot, G. Jolicard, R. Lefebvre, O. Atabek, Controlling vibrational cooling
with zero-width resonances: an adiabatic floquet approach. Phys. Rev. A 94, 043409 (2016)
39. P.R. Bunker, P. Jensen, Molecular Symmetry and Spectroscopy (NRC Research Press, Ottawa,
1998)
40. S. Magnier, P. Millié, O. Dulieu, F. Masnou-Seeuws, Potential curves for the ground and excited
states of the Na 2 molecule up to the (3s+5p) dissociation limit: results of two different effective
potential calculations. J. Chem. Phys. 98, 7113–7125 (1993)
41. W.T. Zemke, K.K. Verma, T. Vu, W.C. Stwalley, An investigation of radiative transition probabilities for the A 1 σ +
u -X 1 σ +
g bands of Na 2 . J. Mol. Spectrosc. 85, 150–176 (1981)
42. T. Szidarovszky, A.G. Császár, G. Czakó, On the efficiency of treating singularities in triatomic
variational vibrational computations. The vibrational states of H
+
3 up to dissociation. Phys.
Chem. Chem. Phys. 12, 8373–8386 (2010)
43. H. Xu, E. Lötstedt, A. Iwasaki, K. Yamanouchi, Sub-10-fs population inversion in N
+
2 in air
lasing through multiple state coupling. Nat. Commun. 6, 8347 (2015)
44. Y. Zhang, E. Lötstedt, K. Yamanouchi, Population inversion in a strongly driven two-level
system at far-off resonance. J. Phys. B 50, 185603 (2017)
