Nuclear structure at intermediate energies. Progress report

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We report here oil the progress that we made for the nine months beginning October 1, 1991 for DOE Grant No. DE-FG05-87ER40309. The report covers the third year of a three year grant. Since we are submitting an accompanying Grant Renewal Proposal, we provide in this report more background information than usual for the different projects. The theme that unites the experiments undertaken by the Bonner Lab Medium Energy Group is a determination to understand in detail the many facets and manifestations of the strong interaction, that which is now referred to as nonperturbative QCD. Whether we are investigating the ... continued below

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65 p.

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Bonner, B.E. & Mutchler, G.S. July 15, 1992.

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Description

We report here oil the progress that we made for the nine months beginning October 1, 1991 for DOE Grant No. DE-FG05-87ER40309. The report covers the third year of a three year grant. Since we are submitting an accompanying Grant Renewal Proposal, we provide in this report more background information than usual for the different projects. The theme that unites the experiments undertaken by the Bonner Lab Medium Energy Group is a determination to understand in detail the many facets and manifestations of the strong interaction, that which is now referred to as nonperturbative QCD. Whether we are investigating the question of just what does carry the spin of baryons, or the extent of the validity of the SU(6) wavefunctions for the excited hyperons (as will be measured in our CEBAF experiment), or questions associated with the formation of a new state of matter predicted by QCD (the subject of AGS {bar p} experiment E854, AGS heavy ion experiment E810, as-well as the approved STAR experiment at RHIC), - all these projects share this common goal. FNAL E683 may well open a new field of investigation in nuclear physics: That of just how colored quarks and gluons interact with nuclear matter as they traverse nuclei of different-sizes. In most all of the experiments mentioned, above, the Bonner Lab Group is playing major leadership roles as well as doing a big fraction of the hard work that such experiments require. We use many of the facilities that are available to the intermediate energy physics community and we use our expertise to design and fabricate the detectors and instrumentation that are required to perform the measurements which we decide to do. The format we follow in the Progress Report is,to provide a concise, but fairly complete write-up on each project. The publications listed in Section In give much greater detail on many of the projects. The aim in this report is to focus on the physics goals, the results, and their significance.

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65 p.

Notes

INIS; OSTI as DE95015184

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  • Other Information: PBD: 15 Jul 1992

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  • Other: DE95015184
  • Report No.: DOE/ER/40309--15
  • Grant Number: FG05-87ER40309
  • DOI: 10.2172/90741 | External Link
  • Office of Scientific & Technical Information Report Number: 90741
  • Archival Resource Key: ark:/67531/metadc791786

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  • July 15, 1992

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  • Dec. 19, 2015, 7:14 p.m.

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  • Jan. 14, 2016, 6:11 p.m.

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Bonner, B.E. & Mutchler, G.S. Nuclear structure at intermediate energies. Progress report, report, July 15, 1992; United States. (digital.library.unt.edu/ark:/67531/metadc791786/: accessed September 21, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.