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Article Dans Une Revue Physical Chemistry Chemical Physics Année : 2008

Implementation of an iterative algorithm for optimal control of molecular dynamics into MCTDH

Résumé

We have extended a previously implemented algorithm for using optimal control theory within the multi-configurational time-dependent Hartree (MCTDH) software. The new implementation allows the use of arbitrary dipole operators for generating the optimal laser field. A variant that does not require saving the time-dependent wave function has been developed, where simultaneous forward and backward propagations are performed. Input parameters are concentrated in a single input file analogous to the input files used elsewhere in MCTDH. We use here two simple examples to demonstrate the use of OCT-MCTDH: the modified Henon-Heiles potential and a two-dimensional model of acetylene. For both systems, a controlled transition between two vibrational states is tested. Results obtained with MCTDH and exact calculations are compared.

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Dates et versions

hal-02022003 , version 1 (17-02-2019)

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Markus Schröder, José-Luis Carreón-Macedo, Alex Brown. Implementation of an iterative algorithm for optimal control of molecular dynamics into MCTDH. Physical Chemistry Chemical Physics, 2008, 10 (6), pp.850-856. ⟨10.1039/b714821f⟩. ⟨hal-02022003⟩

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