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Accelerator Be-target Neutron Sources for the CTR Materials Program

Accelerator Be-target Neutron Sources for the CTR Materials Program
Author:
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Total Pages:
Release: 1973
Genre:
ISBN:

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A preliminary assessment is presented of the potential for utilizing existing accelerator Be-target systems in the CTR Materials Program. The considerations are aimed to partially satisfy the programmatic near-term phase of the technology program. (auth).


Neutron-emission Measurements at a White Neutron Source

Neutron-emission Measurements at a White Neutron Source
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Release: 2010
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Data on the spectrum of neutrons emittcd from neutron-induced reactions are important in basic nuclear physics and in applications. Our program studies neutron emission from inelastic scattering as well as fission neutron spectra. A ''white'' neutron source (continuous in energy) allows measurements over a wide range of neutron energies all in one experiment. We use the tast neutron source at the Los Alamos Neutron Science Center for incident neutron energies from 0.5 MeV to 200 MeV These experiments are based on double time-of-flight techniques to determine the energies of the incident and emitted neutrons. For the fission neutron measurements, parallel-plate ionization or avalanche detectors identify fission in actinide samples and give the required fast timing pulse. For inelastic scattering, gamma-ray detectors provide the timing and energy spectroscopy. A large neutron-detector array detects the emitted neutrons. Time-of-flight techniques are used to measure the energies of both the incident and emitted neutrons. Design considerations for the array include neutron-gamma discrimination, neutron energy resolution, angular coverage, segmentation, detector efficiency calibration and data acquisition. We have made preliminary measurements of the fission neutron spectra from 235U, 238U, 237Np and 239Pu. Neutron emission spectra from inelastic scattering on iron and nickel have also been investigated. The results obtained will be compared with evaluated data.


Fusion Energy Conversion

Fusion Energy Conversion
Author: George Hunter Miley
Publisher:
Total Pages: 476
Release: 1976
Genre: Technology & Engineering
ISBN:

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