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NSR database version of April 27, 2024.

Search: Author = A.Chait

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2020PI04      Phys.Rev. C 101, 044609 (2020)

V.Pines, M.Pines, A.Chait, B.M.Steinetz, L.P.Forsley, R.C.Hendricks, G.C.Fralick, T.L.Benyo, B.Baramsai, P.B.Ugorowski, M.D.Becks, R.E.Martin, N.Penney, C.E.Sandifer

Nuclear fusion reactions in deuterated metals

NUCLEAR REACTIONS 2H(d, p)3H, E=0-1.09 MeV; calculated S-factor of deuterated metal target due to electron lattice screening of Coulomb force. 2H(e+, e+), (e-, e-), (γ, γ), E=2 MeV; 2H(p, p), (d, d), (α, α), E=3 MeV; 2H(n, n), E=2.45 MeV; calculated total σ, mean deuteron recoil energy. Discussed role of electron screening on the efficiency of nuclear fusion events between charged particles.

doi: 10.1103/PhysRevC.101.044609
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2020ST06      Phys.Rev. C 101, 044610 (2020)

B.M.Steinetz, T.L.Benyo, A.Chait, R.C.Hendricks, L.P.Forsley, B.Baramsai, P.B.Ugorowski, M.D.Becks, V.Pines, M.Pines, R.E.Martin, N.Penney, G.C.Fralick, C.E.Sandifer

Novel nuclear reactions observed in bremsstrahlung-irradiated deuterated metals

NUCLEAR REACTIONS Ti, Er(γ, n), E=2.5-2.9 MeV; measured photodissociation neutron spectra, E(n), I(n) using deuterated ErD2 and TiD2 targets, and lead-shielded liquid and plastic scintillator detectors. 2H(d, n), (d, p), E=0.064, 0.98-1.27 MeV; calculated neutron energies from kinetic heating of 2H (Deuterium) fuel. 46Ti(d, n), E=1.2 MeV; 47Ti(d, n), E=0.40 MeV; 166,167,168,170Er(d, n), E=1.27 MeV; 170Er(d, n), E=0.87 MeV; 166,168(3He, n), E=0.4 MeV; 170Er(3He, n), E=0.82 MeV; measured neutron spectra, E(n), I(n); observed d-D nuclear fusion events in an electron-screened, deuterated metal lattice using a Dynamitron electron accelerator; deduced enhanced fusion cross sections. Comparison with theoretical predictions and experimental inertial confinement d-D fusion results.

doi: 10.1103/PhysRevC.101.044610
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