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Title:Part one: The reaction K-d -> K°nm, from threshold to 300 Mev/c; Part two: K+p elastic scattering: 80-280 Mev/c
Author(s):Lansford, Robert Maurice
Doctoral Committee Chair(s):Sard, R.D.
Department / Program:Physics
Discipline:Physics
Degree:Ph.D.
Genre:Dissertation
Subject(s):elastic scattering
laboratory momentum interval
hydrogen bubble chamber
Abstract:The cross section for the reaction K-D -> Knm The cross section for the reaction X D .. ~K n n has been measured for the laboratory momentum interval from threshold (96.7) to 300 Mev/c. The cross section is found to rise quickly above threshold to around 6 mb at 150 MeV/c, then decrease slowly from 150 to 300 MeV/c. The experimental values are found to be consistently lower (about 20%) than the recent values calculated by Hetherington and Schick using Faddeev techniques. PART TWO An experiment has been performed using the Berkeley 15 inch Hydrogen bubble chamber to measure the low energy K+ p elastic scattering cross section. Although the differential cross section is generally lower than those obtained by StUbbS,,!! the experiments are consistent to within the quoted experimental errors. has been measured for the laboratory momentum interval from threshold (96.7) to 300 Mev/c. The cross section is found to rise quickly above threshold to around 6 mb at 150 MeV/c, then decrease slowly from 150 to 300 MeV/c. The experimental values are found to be consistently lower (about 20%) than the recent values calculated by Hetherington and Schick using Faddeev techniques. PARI TWO An experiment has been performed using the Berkeley 15 inch Hydrogen bubble chamber to measure the low energy K+ p elastic scattering cross section. Although the differential cross section is generally lower than those obtained by StUbbS, the experiments are consistent to within the quoted experimental errors.
Issue Date:1967
Genre:Dissertation / Thesis
Type:Text
Language:English
URI:http://hdl.handle.net/2142/25700
Rights Information:1967 Robert Maurice Lansford
Date Available in IDEALS:2011-07-07
Identifier in Online Catalog:6086863


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