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GaToroid: A novel toroidal gantry for hadron therapy

机译:Gatoroid:一种新的强子治疗的全环龙门

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摘要

We describe here a novel concept of a gantry for hadron therapy, based on the use of a toroidal field configuration. The main features of this concept are that the gantry is not rotating, and is operated in steady-state We propose that is built based on superconducting magnets, reaching field levels not achievable using normal conducting iron-dominated magnets. The simplification resulting from the specific magnetic configuration, and the scale reduction that can be achieved using high-field superconducting magnets, bear a definite potential for significant reduction of dimensions and mass. In this paper we introduce the concept of the toroidal gantry, discussing the features of beam transport in a toroidal field. We then provide general considerations on the design of the coil, and analytical scaling of relevant indicators such as forces and stored energy. Finally, we give an example of practical layouts for a proton gantry that can be used as a benchmark for comparison with other designs.
机译:我们在这里描述了一种新颖的龙门龙龙杆菌的概念,基于面向环形结构的使用。该概念的主要特征是龙门架不旋转,并且在稳态下操作我们提出基于超导磁铁的构建,达到使用正常导电的铁主导磁铁无法实现的现场等级。由特定磁化构造产生的简化和使用高场超导磁体可以实现的刻度降低,具有明显降低尺寸和质量的明显潜力。在本文中,我们介绍了环形龙门的概念,讨论了环形磁场中梁运输的特征。然后,我们提供关于线圈的设计的一般考虑因素,以及诸如力和储存的相关指标的分析缩放。最后,我们为质子龙门架提供了一个实际布局的例子,可以用作与其他设计比较的基准。

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