Delayed-neutrons are of great importance for reactor operations. Current abundances derive from either a measurement performed in 1957 by Keepin or by a summation calculation performed by Brady and England in 1989. In this work, a code has been written to compute a new set of delayed-neutron abundances as well as to estimate uncertainties and correlations through a Monte Carlo method and a Bayesian inference. An experiment will take place in the future to verify the validity of the calculated quantities
A method of uncertainty quantification in the calculation of wait-time probability distributions in ...
Recent advancements in experimental and theoretical nuclear physics have yielded new data and models...
The systematic behavior of emission probabilities was found to be determined by the nuclear pairing ...
International audienceDelayed-neutrons are of great importance for reactor operations. Current abund...
In the context of nuclear reactor physics, one of the main issues is the control of the chain reacti...
In the normal operation of nuclear reactors, the kinetic behavior of the neutron population in the c...
A technique for the identification of delayed neutron precursors has been developed based on the pro...
The reactivity calculations with the delayed neutron (DN) six-group parameter sets in ENDF/B-VI were...
Nuclear technology developments and nuclear astrophysics studies impose high data requirements on ne...
We have performed new accurate measurements of the beta-delayed neutron emission probability for ten...
In a nuclear reactor, delayed neutrons play a critical role in sustaining a controllable chain react...
AbstractA project is described on a comprehensive approach to improve accuracy of delayed-neutron da...
Analytical formulations that describe the time dependence of neutron populations in nuclear material...
International audienceIn the normal operation of nuclear reactors, the kinetic behavior of the neutr...
As part of an international effort, the Los Alamos National Laboratory has been asked to (1) determi...
A method of uncertainty quantification in the calculation of wait-time probability distributions in ...
Recent advancements in experimental and theoretical nuclear physics have yielded new data and models...
The systematic behavior of emission probabilities was found to be determined by the nuclear pairing ...
International audienceDelayed-neutrons are of great importance for reactor operations. Current abund...
In the context of nuclear reactor physics, one of the main issues is the control of the chain reacti...
In the normal operation of nuclear reactors, the kinetic behavior of the neutron population in the c...
A technique for the identification of delayed neutron precursors has been developed based on the pro...
The reactivity calculations with the delayed neutron (DN) six-group parameter sets in ENDF/B-VI were...
Nuclear technology developments and nuclear astrophysics studies impose high data requirements on ne...
We have performed new accurate measurements of the beta-delayed neutron emission probability for ten...
In a nuclear reactor, delayed neutrons play a critical role in sustaining a controllable chain react...
AbstractA project is described on a comprehensive approach to improve accuracy of delayed-neutron da...
Analytical formulations that describe the time dependence of neutron populations in nuclear material...
International audienceIn the normal operation of nuclear reactors, the kinetic behavior of the neutr...
As part of an international effort, the Los Alamos National Laboratory has been asked to (1) determi...
A method of uncertainty quantification in the calculation of wait-time probability distributions in ...
Recent advancements in experimental and theoretical nuclear physics have yielded new data and models...
The systematic behavior of emission probabilities was found to be determined by the nuclear pairing ...