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A quark model of {bar {Lambda}}{Lambda} production in {bar p}p interactions

Conference ·
OSTI ID:10132802
 [1]; ;  [2];  [3]
  1. Seattle Univ., WA (United States). Dept. of Physics
  2. Washington Univ., Seattle, WA (United States). Dept. of Physics
  3. Colorado Univ., Boulder, CO (United States). Nuclear Physics Lab.

A quark model which includes both scalar and vector contributions to the reaction mechanism (SV quark model) is used in a DWBA calculation of {anti {Lambda}}{Lambda} production in {bar p}p interactions. Total and differential cross-sections, polarizations, depolarizations, and spin-correlation coefficients are computed for laboratory momenta from threshold to 1695 MeV/c. The free parameters of the calculation are the scalar and vector strengths, a quark cluster size parameter, and the parameters of the unknown {anti {Lambda}}{Lambda} potentials. Good agreement with experiment is found for constructive interference of the scalar and vector terms, and for {anti {Lambda}}{Lambda} potentials which differ from those suggested by several authors on the basis of SU(3) arguments. The fit to the data is better than that obtained by other quark models, which use only scalar or vector annihilation terms. The agreement with experiment is also better than that found in meson-exchange models. The recent suggestion [1] that measurement of the depolarization parameter D{sub nn} can be used to discriminate between meson-exchange and quark models is examined in detail. We conclude that a measurement of D{sub nn} will provide a test of which of these models, as presently constructed, is the more appropriate description of strangeness production in the {bar p}p {yields} {anti {Lambda}}{Lambda} reaction.

Research Organization:
Washington Univ., Seattle, WA (United States). Dept. of Physics
Sponsoring Organization:
USDOE, Washington, DC (United States); National Science Foundation, Washington, DC (United States)
DOE Contract Number:
FG06-88ER40427
OSTI ID:
10132802
Report Number(s):
DOE/ER/40427--31-N93; CONF-9309352--1; ON: DE94008071; BR: KB0300000/KP0300000; CNN: Grant PHY-9223618
Country of Publication:
United States
Language:
English

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