208
References
138. X. Li, G.A. Parker, P. Brumer, I. Thanopulos, M. Shapiro, Theory of laser enhancement and
suppression of cold reactions: the Fermion-Boson 6 Li + 7 Li 2 → 6 Li 7 Li + 7 Li radiative
collision. J. Chem. Phys. 128, 124314 (2008)
139. X. Li, G.A. Parker, P. Brumer, I. Thanopulos, M. Shapiro, Laser-catalyzed production of
ultracold molecules: the 6 Li + 6 Li 7 Li → 7 Li + 6 Li 2 reaction. Phys. Rev. Lett. 101, 043003
(2008)
140. X. Li, D.A. Brue, G.A. Parker, New method for calculating bound states: the A1 states of Li 3
on the spin-aligned ( 4 A ) potential surface. J. Chem. Phys. 127, 014108 (2007)
141. X. Li, D.A. Brue, G.A. Parker, S. Chang, General laser interaction theory in atom-diatom
systems for both adiabatic and non-adiabatic cases. J. Phys. Chem. A 110, 5504–5512 (2006)
142. R.T. Pack, E.A. Butcher, G.A. Parker, Accurate 3D quantum probabilities and collision lifetimes of the H+O 2 combustion reaction. J. Chem. Phys. 102, 5998–6012 (1995)
143. G.A. Parker, A. Laganà, S. Crocchianti, R.T. Pack, A detailed 3D quantum study of the
Li + HF reaction. J. Chem. Phys. 102, 1238–1250 (1995)
144. B.J. Archer, G.A. Parker, R.T. Pack, Positron-hydrogen atom S-wave coupled channel scattering at low energies. Phys. Rev. Lett. 41, 1303–1310 (1990)
145. J.V. Lill, G.A. Parker, J.C. Light, The discrete variable-finite basis approach to quantum
scattering. J. Chem. Phys. 85, 900–910 (1986)
146. M. Keil, G.A. Parker, Empirical potential for the He + CO 2 interaction: multi-property fitting
in the infnite-order sudden approximation. J. Chem. Phys. 82, 1947–1966 (1985)
147. M. Keil, G.A. Parker, A. Kuppermann, An empirical anisotropic intermolecular potential for
He + CO 2 . Chem. Phys. Lett. 59, 443–448 (1978)
148. G.A. Parker, R.T. Pack, Rotationally and vibrationally inelastic scattering in the rotational
IOS approximation. Ultrasimple of total (differential, integral, and transport) cross sections
for non-spherical molecules. J. Chem. Phys. 68, 1585–1601 (1978)
149. A. Schawlow, T.W. Hnsch, G.W. Series, The spectrum of atomic hydrogen. Sci. Am. 240,
94–111 (1979)
150. C. Manuali, A. Laganà, GRIF: a new collaborative framework for a web service approach to
grid empowered calculations. Future Gener. Comput. Syst. 27(3), 315–318 (2011)
151. https://www.fosteropenscience.eu/
152. H. Goldstein, Classical Mechanics (Addison Wesley, Tokyo, 1964)
153. D.M. Hirst, Potential Energy Surfaces: Molecular Structures and dynamics (Taylor & Francis
Inc., London, 1985)
References
138. X. Li, G.A. Parker, P. Brumer, I. Thanopulos, M. Shapiro, Theory of laser enhancement and
suppression of cold reactions: the Fermion-Boson 6 Li + 7 Li 2 → 6 Li 7 Li + 7 Li radiative
collision. J. Chem. Phys. 128, 124314 (2008)
139. X. Li, G.A. Parker, P. Brumer, I. Thanopulos, M. Shapiro, Laser-catalyzed production of
ultracold molecules: the 6 Li + 6 Li 7 Li → 7 Li + 6 Li 2 reaction. Phys. Rev. Lett. 101, 043003
(2008)
140. X. Li, D.A. Brue, G.A. Parker, New method for calculating bound states: the A1 states of Li 3
on the spin-aligned ( 4 A ) potential surface. J. Chem. Phys. 127, 014108 (2007)
141. X. Li, D.A. Brue, G.A. Parker, S. Chang, General laser interaction theory in atom-diatom
systems for both adiabatic and non-adiabatic cases. J. Phys. Chem. A 110, 5504–5512 (2006)
142. R.T. Pack, E.A. Butcher, G.A. Parker, Accurate 3D quantum probabilities and collision lifetimes of the H+O 2 combustion reaction. J. Chem. Phys. 102, 5998–6012 (1995)
143. G.A. Parker, A. Laganà, S. Crocchianti, R.T. Pack, A detailed 3D quantum study of the
Li + HF reaction. J. Chem. Phys. 102, 1238–1250 (1995)
144. B.J. Archer, G.A. Parker, R.T. Pack, Positron-hydrogen atom S-wave coupled channel scattering at low energies. Phys. Rev. Lett. 41, 1303–1310 (1990)
145. J.V. Lill, G.A. Parker, J.C. Light, The discrete variable-finite basis approach to quantum
scattering. J. Chem. Phys. 85, 900–910 (1986)
146. M. Keil, G.A. Parker, Empirical potential for the He + CO 2 interaction: multi-property fitting
in the infnite-order sudden approximation. J. Chem. Phys. 82, 1947–1966 (1985)
147. M. Keil, G.A. Parker, A. Kuppermann, An empirical anisotropic intermolecular potential for
He + CO 2 . Chem. Phys. Lett. 59, 443–448 (1978)
148. G.A. Parker, R.T. Pack, Rotationally and vibrationally inelastic scattering in the rotational
IOS approximation. Ultrasimple of total (differential, integral, and transport) cross sections
for non-spherical molecules. J. Chem. Phys. 68, 1585–1601 (1978)
149. A. Schawlow, T.W. Hnsch, G.W. Series, The spectrum of atomic hydrogen. Sci. Am. 240,
94–111 (1979)
150. C. Manuali, A. Laganà, GRIF: a new collaborative framework for a web service approach to
grid empowered calculations. Future Gener. Comput. Syst. 27(3), 315–318 (2011)
151. https://www.fosteropenscience.eu/
152. H. Goldstein, Classical Mechanics (Addison Wesley, Tokyo, 1964)
153. D.M. Hirst, Potential Energy Surfaces: Molecular Structures and dynamics (Taylor & Francis
Inc., London, 1985)
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