Title of article
Energy gap dependence of vibrational dephasing rates in a bath: a semigroup description Original Research Article
Author/Authors
Daren M. Lockwood، نويسنده , , Mark Ratner، نويسنده , , Ronnie Kosloff، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2001
Pages
10
From page
55
To page
64
Abstract
The quantum dynamical semigroup formalism provides an appealing general framework for discussing factors that affect pure vibrational dephasing rates in chemical systems. Within this framework, we formulate a Poisson model of pure vibrational dephasing which is more generally applicable than the commonly employed stochastic Gaussian dephasing model. In the limit of small and frequent phase changes, the Poisson model reduces to the stochastic Gaussian form. We find that for certain vibrational states of the lithium dimer in argon, the stochastic Gaussian model is valid, while for other states large and abrupt phase changes clearly require application of the Poisson model. In the former case, dephasing rates increase with the difference in quantum number between constituent vibrational states, while in the latter case, the dependence on quantum number difference or energy gap can become negligible. Recent experimental advances described by Amitay and Leone are expected to permit experimental tests of our theoretical predictions.
Journal title
Chemical Physics
Serial Year
2001
Journal title
Chemical Physics
Record number
1056140
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