Random-walk model of precompound decay. Pt. 2
Description
The uncertainties arising from the stochastic nature of precompound decay nuclear reactions are analyzed in the framework of the preequilibrium exciton and random-walk models. It is demonstrated that the standard deviations and the mean values of the exciton-state lifetimes are of the same order of magnitude. Their correlations are weakly positive, except for exciton states near the equilibrium number, where the correlations are significant. The usefulness and the limitations of the never-come-back approximation are discussed. A general proof is presented of the conditions under which the master-equation and random-walk approaches to Markov processes are equivalent. Connections between different preequilibrium models, e.g. the multi-step compound model and the microscopic statistical theory of precompound decay, are pointed out. It is shown that the waiting time between subsequent collisions is governed by a Poisson process, suggesting that the variance associated with the nucleon mean free path in nuclear matter, as estimated from preequilibrium models, is considerable. The stochastic uncertainties in the emission cross-sections correspond to those of a Bernoulli process. (orig.)
Additional details
Additional titles
- Subtitle (English)
- Stochastic uncertainties in the lifetimes and cross-sections
Publishing Information
- Journal Title
- Z. Phys., A
- Journal Volume
- 313
- Journal Issue
- 1/2
- Series
- CODEN: ZPAAD.;Z. Phys., A.
- Journal Page Range
- 83-92
- ISSN
- 0340-2193
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- Germany
- INIS RN
- 14785756
- Subject category
- S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
- Descriptors DEI
- ANGULAR DISTRIBUTION; CORRELATIONS; CROSS SECTIONS; EXCITONS; LIFETIME; MARKOV PROCESS; MEAN FREE PATH; MEV RANGE 10-100; NEUTRON REACTIONS; NIOBIUM 93 TARGET; NUCLEAR DECAY; NUCLEAR MATTER; NUCLEAR MODELS; PRECOMPOUND-NUCLEUS EMISSION; STOCHASTIC PROCESSES
- Descriptors DEC
- BARYON REACTIONS; DECAY; DISTRIBUTION; ENERGY RANGE; HADRON REACTIONS; MATHEMATICAL MODELS; MATTER; MEV RANGE; NUCLEAR REACTIONS; NUCLEON REACTIONS; QUASI PARTICLES; TARGETS