Title of article :
Time evolution in the unimolecular master equation at low temperatures: full spectral solution with scalable iterative methods and high precision Original Research Article
Author/Authors :
Terry J. Frankcombe، نويسنده , , Sean C. Smith، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2001
Pages :
16
From page :
39
To page :
54
Abstract :
A new method is presented to determine an accurate eigendecomposition of difficult low temperature unimolecular master equation problems. Based on a generalisation of the Nesbet method, the new method is capable of achieving complete spectral resolution of the master equation matrix with relative accuracy in the eigenvectors. The method is applied to a test case of the decomposition of ethane at 300 K from a microcanonical initial population with energy transfer modelled by both Ergodic Collision Theory and the exponential-down model. The fact that quadruple precision (16-byte) arithmetic is required irrespective of the eigensolution method used is demonstrated.
Keywords :
HONE method , Time-dependent concentration , Nesbet method , Master equation , Spectral solution , Arnoldi method
Journal title :
Computer Physics Communications
Serial Year :
2001
Journal title :
Computer Physics Communications
Record number :
1135723
Link To Document :
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