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- W2074656406 abstract "The conversion of relativistic H− to H+ beams by stripping in a thin carbon foil plays an important role in the injection of high-energy proton accelerators and storage rings. The residual portion of neutral hydrogen in excited states determines the beam loss and the level of radiation near the first turn of the ring. The understanding of the stripping is therefore of crucial importance for the optimization of the injection. We have performed a classical Monte-Carlo simulation of the transport of H− and of excited H(n) states through carbon foils at relativistic energies. The transport of bound and free electrons in the presence of the Coulomb field of the nucleus as well as the multiple scattering of the solid is taken into account. We analyzed the relativistic modification of the collision kernel and found that transverse excitations are not yet important at moderate γ (γ ≤ 2). The distribution of excited states of H and of survival of H− are presented as a function of the thickness of the foil and compared to experimental data from LAMPF." @default.
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- W2074656406 date "1995-05-01" @default.
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- W2074656406 title "Monte-Carlo simulation of the production of H excited states by interaction of H− with thin carbon foils" @default.
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- W2074656406 doi "https://doi.org/10.1016/0168-583x(95)00040-2" @default.
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