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- W58178602 abstract "The MARS15 radiation simulations were performed for the ILC cryomodule. The model assumes a uniform beam loss intensity of 1 W/m of 750-MeV and 250-GeV electron along the inner surface of the beam pipe and the cavity iris of the 12-m cryomodule. Two-dimensional distributions of radiation dose in the module were obtained. Absorbed dose rate and energy spectra of electrons, photons, neutrons and protons were also obtained at the three cryogenic thermometers locations by filling with silicon material in the appropriate locations, and radiation hardness of the thermometers was discussed. From the obtained results, maximum absorbed dose of thermometers at the cooling pipe is 0.85mGy/sec (85 mRad/sec), that is 0.31 MGy (31 MRad) for 20 years." @default.
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- W58178602 date "2007-04-01" @default.
- W58178602 modified "2023-09-23" @default.
- W58178602 title "Radiation calculations for the ILC cryomodule" @default.
- W58178602 doi "https://doi.org/10.2172/902540" @default.
- W58178602 hasPublicationYear "2007" @default.
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