Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

$pi$$sup -$ CAPTURE IN COMPLEX NUCLEI AND NUCLEAR PAIR CORRELATIONS

Journal Article · · Phys. Rev. Letters
Scintillation counters in coincidence were used as detectors of neutrons and protons produced in pi /sup -/ capture by complex nuclei. By measuring neutrons, it was hoped to establish whether pi /sup -/ capture in complex nuclei involves two nucleons, and if it does, to use the process to study the ratio of neutron--proton pairs to proton--proton pairs. The pi /sup -/ mesons were stopped in Li, C, Al, S, Cu, and Pb targets. In order to test the spatial correlation of the ejected nucleons, measurements were made with the counters 90 and 180 deg from each other. The results obtained are given as coincidences as a function of angle. If corrections are made for relative probability of detecting neutrons and protons, the following ratios of n--n events (a) STA pi / sup -/ + p + n yields n + n! to n--p events (b) STA pi /sup -/ + p + p yields n + p! are obtained: carbon, a/b = 5.0 plus or minus 1.5; aluminum, a/b = 3.9 plus or minus 1.2. Due to background subtractions and secondary events contributing more to the proton coincidence runs, it is felt that these observed ratios are to be taken as lower limits on the ratio of reaction. (B.O.G.)
Research Organization:
Massachusetts Inst. of Tech., Cambridge
NSA Number:
NSA-14-016233
OSTI ID:
4137452
Journal Information:
Phys. Rev. Letters, Journal Name: Phys. Rev. Letters Vol. Vol: 4
Country of Publication:
Country unknown/Code not available
Language:
English

Similar Records

EFFECT OF NUCLEAR BINDING OF NUCLEONS ON THE SHAPE OF THE $pi$-MESON ENERGY SPECTRA
Journal Article · Wed Nov 30 23:00:00 EST 1960 · Zhur. Eksptl'. i Teoret. Fiz. · OSTI ID:4097838

SINGLE PION PRODUCTION IN 0.96-Bev $pi$ to the minus -p INTERACTIONS
Journal Article · Mon Aug 15 00:00:00 EDT 1960 · Phys. Rev. Letters · OSTI ID:4136937

EFFECTS OF THE NUCLEAR BINDING OF NUCLEONS ON PION SPECTRA
Journal Article · Tue Feb 28 23:00:00 EST 1961 · Nuclear Phys. · OSTI ID:4024306