Spallation radiation damage and the radiation damage facility at the LAMPF A-6 target station

Author:

Wechsler Monroe S.,Sommer Walter F.

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics

Reference17 articles.

1. Calculation of radiation damage effects of 800 MeV protons in a “thin” copper target

2. Depth distribution of energy deposition by ion bombardment

3. Calculations of energy loss, range, path length, straggling, multiple scattering, and probability of inelastic nuclear collisions for 0.1–100 MeV protons;Janni,1966

4. Calculation of radiation effects as a function of incident neutron spectrum

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1. Computer and experimental modeling of target performance in particle beams and fusion or fission environments;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2002-03

2. Radiation effects in materials for accelerator-driven neutron technologies;Journal of Nuclear Materials;1997-04

3. A comparison of microstructures in copper irradiated with fission, fusion and spallation neutrons;Journal of Nuclear Materials;1992-09

4. High heat flux experiments on ceramics: material selection for neutron irradiation tests;Journal of Nuclear Materials;1988-07

5. Limitations of 14 MeV neutron simulation techniques;Journal of Nuclear Materials;1988-07

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