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- W2108021233 abstract "In heavy ion fusion, the compression of the DT pellet requires high intensity beams of ions in the gigaelectron volt energy range. Charge-changing collisions due to intrabeam scattering can have a high impact on the design of adequate accelerator and storage rings. Not only do intensity losses have to be taken into account, but also the deposition of energy on the beam lines after bending magnets, for example, may be nonnegligible. The center-of-mass energy for these intrabeam collisions is typically in the kiloelectron volt range for beam energies in the order of several gigaelectron volts. In this article, we present experimental cross sections for charge transfer and ionization in homonuclear collisions of Ar 4+ , Kr 4+ , and Xe 4+ , and for charge transfer only in homonuclear collisions of Pb 4+ and Bi 4+ . Using a hypothetical 100-Tm synchrotron as an example, expected particle losses are calculated based on the experimental data. The results are compared with expectations for singly charged Bi + ions, which are usually considered for heavy ion fusion." @default.
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- W2108021233 date "2002-07-01" @default.
- W2108021233 modified "2023-09-26" @default.
- W2108021233 title "Charge-changing ion–ion collisions in heavy ion fusion" @default.
- W2108021233 doi "https://doi.org/10.1017/s0263034602203262" @default.
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