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Titlebook: Simulation Studies of Recombination Kinetics and Spin Dynamics in Radiation Chemistry; Amit Agarwal Book 2014 Springer International Publi

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Simulation Studies of Recombination Kinetics and Spin Dynamics in Radiation Chemistry978-3-319-06272-3Series ISSN 2190-5053 Series E-ISSN 2190-5061
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Spin Dynamics,he situation becomes much more complicated. A spur results from a single ionisation event in which both the energy and momentum is transferred from a high energy electron (or from other types of radiation) to an electron on the absorbing medium.
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Reactive Products: New IRT Algorithm,. This is because in IRT the diffusive trajectories are not tracked and as result the distance of the newly formed product to the remaining reactants is not known. This information is needed in the IRT in order to generate a new reaction time from a suitable marginal distribution function.
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2190-5053 or newcomers to the field.Describes new simulation techniqueAmit Agarwal’s thesis reports a substantial contribution to the microscopic simulation of radiation chemical reactions. In his research Agarwal extends existing models to further understand scavenging, spin and relaxation effects. This rese
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Spin Dynamics,he situation becomes much more complicated. A spur results from a single ionisation event in which both the energy and momentum is transferred from a high energy electron (or from other types of radiation) to an electron on the absorbing medium.
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Simulation Techniques and Development,ely the independent reaction times model (IRT) and Monte Carlo random flights simulation. Although the random flights simulation is commonly used to model radiation tracks, it unfortunately requires significant computation resources, making its applicability limited to spurs containing a small numbe
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Reactive Products: New IRT Algorithm,. This is because in IRT the diffusive trajectories are not tracked and as result the distance of the newly formed product to the remaining reactants is not known. This information is needed in the IRT in order to generate a new reaction time from a suitable marginal distribution function.
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