Study of the possibility of a rho-$omega$ interference in the $pi$$sup -$p $Yields$ $pi$$sup +$$pi$$sup -$n reaction at 2.77 GeV/c (in French)
Thesis/Dissertation
·
OSTI ID:4475458
- Research Organization:
- Originating Research Org. not identified
- NSA Number:
- NSA-28-011738
- OSTI ID:
- 4475458
- Report Number(s):
- FRNC-TH--327
- Country of Publication:
- France
- Language:
- French
Similar Records
STUDY OF THE $pi$$sup +$p $Yields$ rho$sup 0$$delta$$sup ++$ REACTION AT 11.7 GeV/c.
A STUDY OF $pi$$sup -$p $Yields$ $omega$n, phin AT 2.10 GeV/c AND $pi$$sup - $p ELASTIC SCATTERING AT 1.89 AND 2.10 GeV/c.
Study of the reaction $pi$$sup +$ + p $Yields$ rho$sup +$ + p at incident momenta 1.28 to 1.84 GeV/c
Thesis/Dissertation
·
Sun Oct 31 00:00:00 EDT 1971
·
OSTI ID:4024659
A STUDY OF $pi$$sup -$p $Yields$ $omega$n, phin AT 2.10 GeV/c AND $pi$$sup - $p ELASTIC SCATTERING AT 1.89 AND 2.10 GeV/c.
Thesis/Dissertation
·
Sat Dec 31 23:00:00 EST 1966
·
OSTI ID:4542824
Study of the reaction $pi$$sup +$ + p $Yields$ rho$sup +$ + p at incident momenta 1.28 to 1.84 GeV/c
Thesis/Dissertation
·
Thu Nov 30 23:00:00 EST 1972
·
OSTI ID:4469712
Related Subjects
*OMEGA-784 RESONANCES-- DECAY
*PION-PROTON INTERACTIONS-- INTERFERENCE
*RHO-765 RESONANCES-- INTERFERENCE
EIGENSTATES
ELECTROMAGNETIC INTERACTIONS
EMISSION
G-PARITY INVARIANCE
GEV RANGE 01-10
LINEAR MOMENTUM
MASS
MATHEMATICAL OPERATORS
N64250 --Physics (High Energy)--Particle Interactions & Properties (Theoretical)--Strong (Baryon No. = 0)
N64260* --Physics (High Energy)--Particle Interactions & Properties (Theoretical)--Strong (Baryon No. = 1)
NEUTRONS
PIONS
PIONS MINUS
PIONS PLUS
PROTONS
SPECTRA
*PION-PROTON INTERACTIONS-- INTERFERENCE
*RHO-765 RESONANCES-- INTERFERENCE
EIGENSTATES
ELECTROMAGNETIC INTERACTIONS
EMISSION
G-PARITY INVARIANCE
GEV RANGE 01-10
LINEAR MOMENTUM
MASS
MATHEMATICAL OPERATORS
N64250 --Physics (High Energy)--Particle Interactions & Properties (Theoretical)--Strong (Baryon No. = 0)
N64260* --Physics (High Energy)--Particle Interactions & Properties (Theoretical)--Strong (Baryon No. = 1)
NEUTRONS
PIONS
PIONS MINUS
PIONS PLUS
PROTONS
SPECTRA