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Title: PARTIAL WAVE ANALYSIS OF $pi$$sup +$p $Yields$ $pi$$sup 0$$delta$$sup ++$(1236) IN THE CENTER OF MASS ENERGY REGION 1820 TO 2090 MeV.

Thesis/Dissertation ·
OSTI ID:4605084

Research Organization:
California Univ., Riverside
NSA Number:
NSA-27-018466
OSTI ID:
4605084
Report Number(s):
UCR-34-P-107-132
Resource Relation:
Other Information: Thesis. UNCL. Orig. Receipt Date: 30-JUN-73
Country of Publication:
United States
Language:
English

Related Subjects

N64260* -Physics (High Energy)-Particle Interactions & Properties (Theoretical)-Strong (Baryon No. = 1)
N64140 -Physics (High Energy)-Particle Interactions & Properties (Experimental)-Strong (Meson-induced)
N64130 -Physics (High Energy)-Particle Interactions & Properties (Experimental)-Strong (Baryon-induced)
ANGULAR DISTRIBUTION
DELTA-1236 RESONANCES
DELTA-1910 RESONANCES
DELTA-1950 RESONANCES
DELTA-1960 RESONANCES
DENSITY MATRIX
DIFFERENTIAL CROSS SECTIONS
GEV RANGE 01-10
LINEAR MOMENTUM
MATRIX ELEMENTS
OBE MODEL
PARTIAL WAVES
PARTICLE PRODUCTION
PION BEAMS
PIONS PLUS
PROTONS
RHO-765 RESONANCES
SCATTERING AMPLITUDES
STRONG INTERACTIONS
BARYONS
RESONANCE ($delta$)/density matrix elements for $delta$$sup ++$(1236) in $pi$$sup +$ + p $Yields$ $pi$$sup 0$ + $delta$$sup ++$(1236) interactions at 1.28 to 1.84 GeV/c
(E/T)
MESONS (rho)/exchange in $pi$$sup +$ + p $Yields$ $pi$$sup 0$ + $delta$$sup ++$(1236) interactions at 1.28 to 1.84 GeV/c
(E/T)
PROTONS/interactions $pi$$sup +$ + p $Yields$ $pi$$sup 0$ + $delta$$sup ++$(1236) at 1.28 to 1.84 GeV/c, differential cross sections, $delta$ density matrix elements, angular distributions, rho exchange, and partial-wave analysis for resonance production and s-channel amplitudes in, (E/T)
BARYONS
RESONANCE ($delta$)/decay $delta$(1950) $Yields$ $delta$ + $pi$
parameters for
(E/T)
MESONS ($pi$$sup +$)/interactions $pi$$sup +$ + p $Yields$ $pi$$sup 0$ + $delta$$sup ++$(1236) at 1.28 to 1.84 GeV/c, differential cross sections, $delta$ density matrix elements, angular distributions, rho exchange, and partial-wave analysis for resonance production and s-channel amplitudes in,