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New concept for acceleration of slow, low-charge state heavy ion beams

机译:加速慢速,低电荷态重离子束的新概念

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A modern post-accelerator for radioactive beam facilities requires acceleration of heavy ions beginning with charge state 1+ in order to maximize the intensity of the beams available for experiments. The acceleration of unstable nuclides with mass number up to 240 is required. For acceleration of low-velocity heavy ions very low frequency RFQs are appropriate. However, the accelerating efficiency of such RFQs is low. To overcome this drawback we propose a hybrid accelerating structure that is formed by an alternating series of drift tubes (DTL) and RFQ sections. In such a structure the accelerating and focusing functions are decoupled. A hybrid RFQ (H-RFQ) operating at 12 MHz was designed for acceleration of heavy ion beams with q/A=1/240. The accelerating structure is /spl sim/3.3 m long and consists of three sections of DTL and two sections of RFQ. Each section of the DTL comprises 10 to 14 drift tubes. The RFQ sections comprise five /spl beta//spl lambda//2 cells and form a focusing triplet. The average accelerating gradient of the H-RFQ is about twice that of a conventional RFQ This paper describes a complete study of beam dynamics in the new H-RFQ accelerating structure. A project to carry out a cold-model test of the H-RFQ will be pursued.
机译:用于放射性束设施的现代后加速器需要加速重离子(从电荷状态1+开始),以使可用于实验的束强度最大化。需要加速质量数高达240的不稳定核素。为了加速低速重离子,非常低频率的RFQ是合适的。但是,这种RFQ的加速效率低。为克服此缺点,我们提出了一种混合加速结构,该结构由一系列交替的漂移管(DTL)和RFQ部分组成。在这种结构中,加速和聚焦功能是分离的。设计了工作在12 MHz的混合RFQ(H-RFQ),以加速q / A = 1/240的重离子束。加速结构的长度为/ spl sim / 3.3 m,由DTL的三个部分和RFQ的两个部分组成。 DTL的每个部分都包含10到14个漂移管。 RFQ部分包含五个/ spl beta // spl lambda // 2单元,并形成聚焦三元组。 H-RFQ的平均加速梯度约为传统RFQ的两倍。本文介绍了对新型H-RFQ加速结构中光束动力学的完整研究。将进行一个对H-RFQ进行冷模型测试的项目。

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