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AbstractAbstract
[en] A method is presented, based on transport matrix operators, intended to study cold neutron propagation in neutron beam guides. These transport operators have been calculated for guides of arbitrary length and curvature taking into account the effects of gravity and the effective reflectivity at the guide walls. This technique was applied to the ILL H53 neutron beam used in the Grenoble neutron-antineutron oscillation experiment showing a good agreement between the calculations and the experimental data. (orig.)
Primary Subject
Record Type
Journal Article
Journal
Nuclear Instruments and Methods in Physics Research. Section A; ISSN 0168-9002; ; CODEN NIMAER; v. 325(1/2); p. 241-254
Country of publication
ANGULAR DISTRIBUTION, BEAM DYNAMICS, BEAM PROFILES, BEAM TRANSPORT, COLD NEUTRONS, EFFICIENCY, EQUATIONS OF MOTION, GRAVITATION, GRAVITATIONAL FIELDS, GRENOBLE REACTOR, MATRICES, NEUTRON BEAMS, NEUTRON FLUX, NEUTRON GUIDES, NEUTRON OSCILLATION, NEUTRON REFLECTORS, PROGRAMMING, SPATIAL DISTRIBUTION, TRAJECTORIES
BARYONS, BEAMS, DIFFERENTIAL EQUATIONS, DISTRIBUTION, DYNAMICS, ELEMENTARY PARTICLES, EQUATIONS, FERMIONS, HADRONS, HEAVY WATER COOLED REACTORS, HEAVY WATER MODERATED REACTORS, MECHANICS, NEUTRONS, NUCLEON BEAMS, NUCLEONS, PARTIAL DIFFERENTIAL EQUATIONS, PARTICLE BEAMS, RADIATION FLUX, REACTORS, RESEARCH AND TEST REACTORS, RESEARCH REACTORS, TANK TYPE REACTORS, TEST FACILITIES, TEST REACTORS
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