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Development of high intensity linear accelerator for heavy ion inertial fusion driver

机译:重离子惯性聚变驱动器高强度直线加速器的研制

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In order to verify the direct plasma injection scheme (DPIS), an acceleration test was carried out in 2001 using a radio frequency quadrupole (RFQ) heavy ion linear accelerator (linac) and a CO_2-laser ion source (LIS) (Okamura et al., 2002) [1]. The accelerated carbon beam was observed successfully and the obtained current was 9.22 mA for C~(4+). To confirm the capability of the DPIS, we succeeded in accelerating 60 mA carbon ions with the DPIS in 2004 (Okamura et al., 2004; Kashiwagi and Hattori, 2004) [2,3]. We have studied a multi-beam type RFQ with an interdigital-H (IH) cavity that has a power-efficient structure in the low energy region. We designed and manufactured a two-beam type RFQ linac as a prototype for the multi-beam type linac; the beam acceleration test of carbon beams showed that it successfully accelerated from 5 keV/μ up to 60 keV/μ with an output current of 108 mA (2 × 54 mA/channel) (Ishibashi et al., 2011) [4]. We believe that the acceleration techniques of DPIS and the multi-beam type IH-RFQ linac are technical breakthroughs for heavy-ion inertial confinement fusion (HIF). The conceptual design of the RF linac with these techniques for HIF is studied. New accelerator-systems using these techniques for the HIF basic experiment are being designed to accelerate 400 mA carbon ions using four-beam type IH-RFQ. linacs with DPIS. A model with a four-beam acceleration cavity was designed and manufactured to establish the proof of principle (PoP) of the accelerator.
机译:为了验证直接等离子体注入方案(DPIS),2001年使用射频四极(RFQ)重离子线性加速器(linac)和CO_2-激光离子源(LIS)进行了加速测试(Okamura等人(2002)[1]。成功观察到加速的碳束,得到的C〜(4+)电流为9.22 mA。为了确认DPIS的功能,我们在2004年成功地使用DPIS加速了60 mA的碳离子(Okamura等,2004; Kashiwagi和Hattori,2004)[2,3]。我们已经研究了具有叉指型H(IH)腔的多光束型RFQ,该腔在低能量区域具有高能效结构。我们设计并制造了两束式RFQ直线加速器,作为多束直线性直线加速器的原型;碳束的束加速试验表明,它以5 keV /μ的速度成功加速到60 keV /μ,输出电流为108 mA(2×54 mA /通道)(Ishibashi等,2011)[4]。我们相信,DPIS和多光束IH-RFQ直线加速器的加速技术是重离子惯性约束聚变(HIF)的技术突破。研究了使用这些技术进行HIF的RF直线加速器的概念设计。正在设计使用这些技术进行HIF基础实验的新型加速器系统,以使用四束IH-RFQ型加速400 mA碳离子。直线加速器与DPIS。设计并制造了具有四束加速腔的模型,以建立加速器的原理证明(PoP)。

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