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用于德国重离子研究中心(GSI)未来高强度加速器设施FAIR屏蔽的蒙特卡罗模拟。

Monte Carlo simulations for the shielding of the future high-intensity accelerator facility FAIR at GSI.

作者信息

Radon T, Gutermuth F, Fehrenbacher G

机构信息

Gesellschaft für Schwerionenforschung mbH, Planckstrasse 1, D-64291 Darmstadt, Germany.

出版信息

Radiat Prot Dosimetry. 2005;115(1-4):212-5. doi: 10.1093/rpd/nci189.

Abstract

The Gesellschaft für Schwerionenforschung (GSI) is planning a significant expansion of its accelerator facilities. Compared to the present GSI facility, a factor of 100 in primary beam intensities and up to a factor of 10,000 in secondary radioactive beam intensities are key technical goals of the proposal. The second branch of the so-called Facility for Antiproton and Ion Research (FAIR) is the production of antiprotons and their storage in rings and traps. The facility will provide beam energies a factor of approximately 15 higher than presently available at the GSI for all ions, from protons to uranium. The shielding design of the synchrotron SIS 100/300 is shown exemplarily by using Monte Carlo calculations with the FLUKA code. The experimental area serving the investigation of compressed baryonic matter is analysed in the same way. In addition, a dose comparison is made for an experimental area operated with medium energy heavy-ion beams. Here, Monte Carlo calculations are performed by using either heavy-ion primary particles or proton beams with intensities scaled by the mass number of the corresponding heavy-ion beam.

摘要

德国重离子研究中心(GSI)正在计划大幅扩建其加速器设施。与目前的GSI设施相比,将初级束流强度提高100倍,次级放射性束流强度提高多达10000倍是该提议的关键技术目标。所谓的反质子与离子研究设施(FAIR)的第二个分支是反质子的产生及其在环和阱中的储存。该设施将为从质子到铀的所有离子提供比GSI目前可用能量高约15倍的束流能量。通过使用FLUKA代码进行蒙特卡罗计算,示例性地展示了同步加速器SIS 100/300的屏蔽设计。对用于研究压缩重子物质的实验区域也进行了同样的分析。此外,还对一个使用中能重离子束运行的实验区域进行了剂量比较。在这里,通过使用重离子初级粒子或强度按相应重离子束质量数缩放的质子束来进行蒙特卡罗计算。

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