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The Journal of Chemical Physics|February 23, 2026
Exploiting the path-integral radius of gyration in open quantum dynamicsAndrew C Hunt, Stuart C AlthorpePhysical Review. E|August 20, 2024
Thermal quenching of classical and semiclassical scramblingVijay Ganesh Sadhasivam, Andrew C Hunt, Lars Meuser, et al.The Journal of Chemical Physics|July 21, 2004
Plane wave packet formulation of atom-plus-diatom quantum reactive scatteringStuart C AlthorpeAnnual Review of Physical Chemistry|June 28, 2024
Path Integral Simulations of Condensed-Phase Vibrational SpectroscopyStuart C AlthorpeThe Journal of Chemical Physics|March 25, 2011
On the equivalence of two commonly used forms of semiclassical instanton theoryStuart C AlthorpeThe Journal of Chemical Physics|March 4, 2006
General explanation of geometric phase effects in reactive systems: Unwinding the nuclear wave function using simple topologyStuart C AlthorpeThe Journal of Chemical Physics|March 24, 2016
Calculating splittings between energy levels of different symmetry using path-integral methodsEdit Mátyus, Stuart C AlthorpeThe Journal of Chemical Physics|July 9, 2018
Mean-field Matsubara dynamics: Analysis of path-integral curvature effects in rovibrational spectraGeorge Trenins, Stuart C AlthorpeThe Journal of Chemical Physics|August 17, 2013
A Chebyshev method for state-to-state reactive scattering using reactant-product decoupling: OH + H2 → H2O + HMarko T Cvitaš, Stuart C AlthorpeThe Journal of Chemical Physics|January 19, 2011
State-to-state reactive scattering in six dimensions using reactant-product decoupling: OH + H2 → H2O + H (J = 0)Marko T Cvitaš, Stuart C AlthorpePageof 7