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Isotope separation using tuned laser and electron beamThe apparatus comprises means for producing an atomic beam containing the isotope of interest and other isotopes. Means are provided for producing a magnetic field traversing the path of the atomic beam of an intensity sufficient to broaden the energy domain of the various individual magnetic sublevels of the isotope of interest and having the atomic beam passing therethrough. A laser beam is produced of a frequency and polarization selected to maximize the activation of only individual magnetic sublevels of the isotope of interest with the portion of its broadened energy domain most removed from other isotopes with the stream. The laser beam is directed so as to strike the atomic beam within the magnetic field and traverse the path of the atomic beam whereby only the isotope of interest is activated by the laser beam. The apparatus further includes means for producing a collimated and high intensity beam of electrons of narrow energy distribution within the magnetic field which is aimed so as to strike the atomic beam while the atomic beam is simultaneously struck by the laser beam and at an energy level selected to ionize the activated isotope of interest but not ground state species included therewith. Deflection means are disposed in the usual manner to collect the ions.
Document ID
19880015348
Acquisition Source
Legacy CDMS
Document Type
Other - Patent
Authors
Trajmar, Sandor
(Jet Propulsion Lab., California Inst. of Tech. Pasadena., United States)
Date Acquired
August 13, 2013
Publication Date
November 3, 1987
Subject Category
Inorganic And Physical Chemistry
Report/Patent Number
Patent Application Number: US-PATENT-APPL-SN-930217
Patent Number: US-PATENT-4,704,197
Patent Number: NASA-CASE-NPO-16907-1-CU
Accession Number
88N24732
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Patent
US-PATENT-4,704,197|NASA-CASE-NPO-16907-1-CU
Patent Application
US-PATENT-APPL-SN-930217
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