(Theoretical Nuclear Physics)
Description
This report discussed the following topics: Consistent RHA-RPA for finite nuclei; vacuum polarization in a finite system; isovector correlations in QHD description of nuclear matter; nuclear response functions in quasielastic electron scattering; charge density differences for nuclei near {sup 208}Pb in quantum hadro-dynamics; excitation of the 10.957 MeV 0{sup {minus}}; T=0 state in {sup 16}O by 400 MeV protons; deformed chiral nucleons; new basis for exact vacuum calculations in 3-spatial dimensions; second order processes in the (e,e{prime}d) reaction; scalar and vector contributions to {bar p}p {yields} {bar {Lambda}}{Lambda} and {bar p}p {yields} {bar {Lambda}}{Sigma}{sup 0} + c.c; and radiative capture …continued below
Physical Description
41 p.
Creation Information
Creator: Unknown. January 1, 1991.
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Thisreport is part of the collection entitled: Office of Scientific & Technical Information Technical Reports and was provided by the UNT Libraries Government Documents Department to theUNT Digital Library, a digital repository hosted by theUNT Libraries. It has been viewed 559 times, with 4 in the last month. More information about this report can be viewed below.
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- United States. Department of Energy. DOE; USDOE, Washington, DC (United States)
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- University of Colorado Boulder. Department of PhysicsPlace of Publication: Boulder, Colorado
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Description
This report discussed the following topics: Consistent RHA-RPA for finite nuclei; vacuum polarization in a finite system; isovector correlations in QHD description of nuclear matter; nuclear response functions in quasielastic electron scattering; charge density differences for nuclei near {sup 208}Pb in quantum hadro-dynamics; excitation of the 10.957 MeV 0{sup {minus}}; T=0 state in {sup 16}O by 400 MeV protons; deformed chiral nucleons; new basis for exact vacuum calculations in 3-spatial dimensions; second order processes in the (e,e{prime}d) reaction; scalar and vector contributions to {bar p}p {yields} {bar {Lambda}}{Lambda} and {bar p}p {yields} {bar {Lambda}}{Sigma}{sup 0} + c.c; and radiative capture of protons by light nuclei at low energies.
Physical Description
41 p.
Notes
OSTI; NTIS; INIS; GPO Dep.
Subjects
Keywords
- Baryon-Baryon Interactions
- Charged-Particle Reactions
- Direct Reactions
- Document Types
- Electron Reactions
- Even-Even Nuclei
- Functions
- Hadron-Hadron Interactions
- Heavy Nuclei
- Interactions
- Isotopes
- Lead 208
- Lead Isotopes
- Lepton Reactions
- Light Nuclei
- Matter
- Nuclear Matter
- Nuclear Reactions
- Nuclear Theory
- Nuclei
- Nucleon-Antinucleon Interactions
- Oxygen 16
- Oxygen Isotopes
- Particle Interactions
- Progress Report
- Proton-Antiproton Interactions
- Quasi-Elastic Scattering
- Quasi-Free Reactions
- Research Programs
- Response Functions
- Scattering
- Stable Isotopes 653000* -- Nuclear Theory
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- Other: DE92000022
- Report No.: DOE/ER/40335-6
- Grant Number: FG02-87ER40335
- Digital Object Identifier: https://doi.org/10.2172/5219332
- Office of Scientific & Technical Information Report Number: 5219332
- Archival Resource Key:ark:/67531/metadc1067172
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Office of Scientific & Technical Information Technical Reports
Reports, articles and other documents harvested from the Office of Scientific and Technical Information.
Office of Scientific and Technical Information (OSTI) is the Department of Energy (DOE) office that collects, preserves, and disseminates DOE-sponsored research and development (R&D) results that are the outcomes of R&D projects or other funded activities at DOE labs and facilities nationwide and grantees at universities and other institutions.
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Creation Date
- January 1, 1991
Added to The UNT Digital Library
- Feb. 4, 2018, 10:51 a.m.
Description Last Updated
- Dec. 14, 2020, 2:27 p.m.
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(Theoretical Nuclear Physics),report, January 1, 1991;Boulder, Colorado. (https://digital.library.unt.edu/ark:/67531/metadc1067172/:accessed July 3, 2025),University of North Texas Libraries, UNT Digital Library,https://digital.library.unt.edu; creditingUNT Libraries Government Documents Department.