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首页> 外文期刊>Nuclear instruments and methods in physics research >Beam breakup in one-turn and two-turn energy recovery linacs
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Beam breakup in one-turn and two-turn energy recovery linacs

机译:一转和两转能量回收直线加速器的光束破裂

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The capital and operating costs of an energy recovery linac (ERL) may be reduced by multi-turn operation, which uses more than one pass of acceleration and deceleration. However, the beam current limit due to multipass beam breakup (BBU) may be decreased. As an example, we study a 1-CeV ERL with average current of 100 mA, which is a possible source of bright synchrotron radiation. A one-turn design with a single superconducting L-band linac is compared to a two-turn single-linac design. In simulations, the BBU threshold currents of the two-turn design are about one-half as large as the one-turn thresholds. If the linac's strongest higher-order modes are damped to obtain quality factors of a few thousand, 100-mA currents are possible in both designs. Thus, a two-turn ERL may be a feasible path to reduce the linac cost and machine size.
机译:能量回收直线加速器(ERL)的资本和运营成本可以通过多转操作来减少,多转操作使用多于一次的加速和减速。但是,由于多通束破裂(BBU)而引起的束电流极限可能会降低。例如,我们研究平均电流为100 mA的1-CeV ERL,这可能是明亮的同步加速器辐射的来源。具有单超导L波段直线加速器的一匝设计与两匝单直线加速器设计相比。在仿真中,两匝设计的BBU阈值电流约为一匝阈值的一半。如果对直线加速器最强的高阶模进行阻尼以获得数千的品质因数,则两种设计都可能会产生100mA的电流。因此,两匝ERL可能是减少直线加速器成本和机器尺寸的可行途径。

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