Stopping Force Analysis of 235U Elemental Fission Product Yields for E = 0.11–92.4 MeV

Author:

Moore M.E.,Latta J.,Snyder L.,Fulsom B.G.,Greife U.,Lyons S.M.,Wood L.S.,Duke D.L.,Anastasiou M.,Barrett J.S.,Bowden N.S.,Bundgaard J.,Casperson R.J.,Classen T.,Dongwi D.H.,Gearhart J.,Geppert-Kleinrath V.,Greife U.,Haseman M.,Heffner M.,Higgins D.,King J.,Klay J.L.,Latta J.,Loveland W.,Magee J.A.,Manning B.,Mendenhall M.P.,Monterial M.,Prokop C.,Sangiorgio S.,Seilhan B.,Snyder L.,Tovesson F.,Towell R.S.,Yao L.

Publisher

Elsevier BV

Subject

Nuclear and High Energy Physics

Reference67 articles.

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4. Velocity dependence of heavy-ion stopping below the maximum;Sigmund;Nucl. Inst. Meth. Phys. Res. Sect. B: Beam Interactions with Mater. Atoms,2015

5. Measurement of the normalized 238U(n, f)/235U(n, f) cross section ratio from threshold to 30 MeV with the NIFFTE fission Time Projection Chamber;Casperson;Phys. Rev. C,2018

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1. Machine learning methods for fission product identification from Bragg curves;AIP Advances;2023-08-01

2. Instrumentation for correlated prompt nγ emission studies in coincidence with fission fragments;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2023-03

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