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Increase of positrons by a high-intensity two-bunch acceleration scheme at the KEKB linac

机译:通过KEKB直线加速器的高强度两束加速方案增加正电子

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As the accumulation current of positrons increases in the KEKB ring, the injection time is becoming longer. It will thus be one of the most important issues affecting the accumulation of the integrated luminosity. As one of the steps, we introduced a high-intensity two-bunch acceleration scheme at the KEKB linac to intensify positrons by means of doubling the primary electrons. We recently obtained test results of 0.54 nC for the first bunch and 0.49 nC for the second bunch at the linac end. This scheme increased the positron intensity by nearly 65%. Since the linac frequency is not a harmonic number of the LER frequency, the best time interval between two bunches is 96.29 ns, corresponding to 49 LER-buckets. Even with this limitation, it is undoubtedly a very useful scheme for increasing the positron injection rate. The beam test results are described.
机译:随着KEKB环中正电子的累积电流增加,注入时间变得更长。因此,它将成为影响积分光度累积的最重要问题之一。作为步骤之一,我们在KEKB直线加速器上引入了高强度的两束加速方案,以通过使一次电子倍增来增强正电子。我们最近在直线加速器末端获得了第一束0.54 nC和第二束0.49 nC的测试结果。该方案将正电子强度提高了近65%。由于线性加速器频率不是LER频率的谐波数,因此两个束之间的最佳时间间隔为96.29 ns,对应于49个LER桶。即使有此限制,它无疑也是提高正电子注入速率的非常有用的方案。描述了光束测试结果。

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