Nalazite se na CroRIS probnoj okolini. Ovdje evidentirani podaci neće biti pohranjeni u Informacijskom sustavu znanosti RH. Ako je ovo greška, CroRIS produkcijskoj okolini moguće je pristupi putem poveznice www.croris.hr
izvor podataka: crosbi

Instanton theory of ground-state tunneling splittings with general paths (CROSBI ID 275906)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Eraković, Mihael ; Vaillant, Christophe L. ; Cvitaš, Marko T. Instanton theory of ground-state tunneling splittings with general paths // The Journal of chemical physics, 152 (2020), 8; 084111, 13. doi: 10.1063/1.5145278

Podaci o odgovornosti

Eraković, Mihael ; Vaillant, Christophe L. ; Cvitaš, Marko T.

engleski

Instanton theory of ground-state tunneling splittings with general paths

We derive a multidimensional instanton theory for calculating ground-state tunneling splittings in Cartesian coordinates for general paths. It is an extension of the method by Mil’nikov and Nakamura [J. Chem. Phys. 115, 6881 (2001)] to include asymmetric paths that are necessary for calculating tunneling splitting patterns in multi- well systems, such as water clusters. The approach avoids multiple expensive matrix diagonalizations to converge the fluctuation prefactor in the ring- polymer instanton (RPI) method, and instead replaces them by an integration of a Riccati differential equation. When combined with the string method for locating instantons, we avoid the need to converge the calculation with respect to the imaginary time period of the semiclassical orbit, thereby reducing the number of convergence parameters of the optimized object to just one: the number of equally spaced system replicas used to represent the instanton path. The entirety of the numerical effort is thus concentrated in optimizing the shape of the path and evaluating hessians along the path, which is a dramatic improvement over RPI. In addition to the standard instanton approximations, we neglect the coupling of vibrational modes to external rotations. The method is tested on the model potential of malonaldehyde and on the water dimer and trimer, giving close agreement with RPI at a much-reduced cost.

instanton theory ; tunneling splittings ; path-integral methods ; quantum molecular dynamics ; rovibrational states

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o izdanju

152 (8)

2020.

084111

13

objavljeno

0021-9606

1089-7690

10.1063/1.5145278

Povezanost rada

Kemija

Poveznice
Indeksiranost