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Anderson, R.E.; Leonard, E.M.; Shea, R.F.; Berggren, R.R.
Los Alamos National Lab., NM (USA)1989
Los Alamos National Lab., NM (USA)1989
AbstractAbstract
[en] Efficient initiation of large-volume chemical lasers may be achieved by neutron induced reactions which produce charged particles in the final state. When a burst mode nuclear reactor is used as the neutron source, both a sufficiently intense neutron flux and a sufficiently short initiation pulse may be possible. Proof-of-principle experiments are planned to demonstrate lasing in a direct nuclear-pumped large-volume system; to study the effects of various neutron absorbing materials on laser performance; to study the effects of long initiation pulse lengths; to demonstrate the performance of large-scale optics and the beam quality that may be obtained; and to assess the performance of alternative designs of burst systems that increase the neutron output and burst repetition rate. 21 refs., 8 figs., 5 tabs
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May 1989; 19 p; Available from NTIS, PC A03/MF A01 - OSTI; 1 as DE89010764; Portions of this document are illegible in microfiche products.
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Report
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ACTINIDE NUCLEI, ALPHA DECAY RADIOISOTOPES, AMPLIFIERS, BORON ISOTOPES, EQUIPMENT, EVEN-ODD NUCLEI, HEAVY NUCLEI, HELIUM ISOTOPES, ISOMERIC TRANSITION ISOTOPES, ISOTOPES, KINETICS, LASERS, LIGHT NUCLEI, LITHIUM ISOTOPES, MINUTES LIVING RADIOISOTOPES, NUCLEI, ODD-ODD NUCLEI, PARTICLE SOURCES, RADIATION FLUX, RADIATION SOURCES, RADIOISOTOPES, STABLE ISOTOPES, URANIUM ISOTOPES, YEARS LIVING RADIOISOTOPES
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