Status update on the NIFFTE high precision fission cross section measurement program
Creators
- Laptev, Alexander B.1
- Tovesson, Fredrik1
- Burgett, Eric2
- Greife, Uwe3
- Grimes, Steven4
- Heffner, Michael D.5
- Hertel, Nolan E.2
- Hill, Tony6
- Isenhower, Donald7
- Klay, Jennifer L.8
- Kornilov, Nickolay4
- Kudo, Ryuho8
- Loveland, Walter9
- Massey, Thomas4
- McGrath, Chris6
- Pickle, Nathan7
- Qu, Hai7
- Sharma, Sarvagya7
- Snyder, Lucas3
- Thornton, Tyler7
- Towell, Rusty S.7
- Watson, Shon7
- Los Alamos National Laboratory (United States)
- 1. Los Alamos National Laboratory, NM (United States)
- 2. Georgia Institute of Technology, Atlanta, GA (United States)
- 3. Colorado School of Mines, Golden, CO (United States)
- 4. Ohio University, Athens, OH (United States)
- 5. Lawrence Livermore National Laboratory, Livermore, CA (United States)
- 6. Idaho National Laboratory, Idaho Falls, ID (United States)
- 7. Abilene Christian University, Abilene, TX (United States)
- 8. California Polytechnic State University, San Luis Obispo, CA (United States)
- 9. Oregon State Univ., Corvallis, OR (United States)
Description
The Neutron Induced Fission Fragment Tracking Experiment (NIFFTE) program has been underway for nearly two years. The program's mission is to measure fission cross sections of the primary fissionable and fissile materials (235U, 239Pu, 238U) as well as the minor actinides across energies from approximately 50 keV up to 20 MeV with an absolute uncertainty of less than one percent while investigating energy ranges from below an eV to 600 MeV. This basic nuclear physics data is being reinvestigated to support the next generation power plants and a fast burner reactor program. Uncertainties in the fast, resolved and unresolved resonance regions in plutonium and other transuranics are extremely large, dominating safety margins in the next generation nuclear power plants and power plants of today. This basic nuclear data can be used to support all aspects of the nuciear renaissance. The measurement campaign is utilizing a Time Projection Chamber or TPC as the tool to measure these cross sections to these unprecedented levels. Unlike traditional fission cross section measurements using time-of-flight and a multiple fission foil configurations in which fission cross sections in relation to that of 235U are performed, the TPC project uses time-of-flight and hydrogen as the benchmark cross section. Using the switch to hydrogen, a simple, smooth cross section that can be used which removes the uncertainties associated with the resolved and unresolved resonances in 235U.
Additional details
Identifiers
Publishing Information
- Imprint Pagination
- 3 p.
- Report number
- LA-UR--10-04750
Conference
- Title
- Annual Meeting of the American Nuclear Society 2010
- Dates
- 13 Jun 2010
- Place
- San Diego, CA (United States)
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 42098079
- Subject category
- S73: NUCLEAR PHYSICS AND RADIATION PHYSICS; S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- ACCURACY; ACTINIDES; BENCHMARKS; BURNERS; CROSS SECTIONS; ENERGY RANGE; FISSILE MATERIALS; FISSION; FISSION FRAGMENTS; HYDROGEN; NEUTRONS; NUCLEAR PHYSICS; NUCLEAR POWER PLANTS; PLUTONIUM; POWER PLANTS; RESONANCE; SAFETY MARGINS; TIME PROJECTION CHAMBERS
- Descriptors DEC
- ACTINIDES; BARYONS; DRIFT CHAMBERS; ELEMENTARY PARTICLES; ELEMENTS; FERMIONS; FISSIONABLE MATERIALS; HADRONS; MATERIALS; MEASURING INSTRUMENTS; METALS; MULTIWIRE PROPORTIONAL CHAMBERS; NONMETALS; NUCLEAR FACILITIES; NUCLEAR FRAGMENTS; NUCLEAR REACTIONS; NUCLEONS; PHYSICS; POWER PLANTS; PROPORTIONAL COUNTERS; RADIATION DETECTORS; THERMAL POWER PLANTS; TRANSURANIUM ELEMENTS
Optional Information
- Contract/Grant/Project number
- AC52-06NA25396
- Funding organization
- US Department of Energy (United States)
- Secondary number(s)
- LA-UR--10-4750