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A New System for Measuring the Beam Position in the Electron- Positron Transport Channel from the VEPP-3 Storage Ring of the VEPP-4M Collider

机译:用于测量VEPP-3-3撞机的VEPP-3存储环中电子正电子传输通道中光束位置的新系统

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摘要

A new system for measuring the position of the beam in a pulsed transport channel from the VEPP-3 storage ring to the VEPP-4M collider is discussed, which provides measurement of the position and intensity of an electron or positron beam in one span. For reliable operation of the experimental complex, it is necessary to continuously monitor the beam trajectory in a non-destructive manner, as well as to measure the possible losses of the beam charge. In 2018, new sensors and new electronics of the beam position measurement system were developed, manufactured, and installed in the transportation channel, which provide much greater accuracy compared to the old system. In the new system, it was possible to almost completely eliminate interference and to achieve measurement accuracy better than 0.02 mm, which is more than enough for optimal tuning of the channel optics and achieving high bypass efficiency. The design of the sensor, the structure and the main features of the construction of electronics are described, the accuracy of measurements is analyzed, and some results of the operation of the new system in the channel are given.
机译:讨论了一种用于从VEPP-3存储环中测量脉冲的位置到VEPP-4M撞机的脉冲的位置的新系统,其在一个跨度中提供了电子或正电子束的位置和强度的测量。为了可靠地操作实验复合物,必须以非破坏性方式连续地监测梁轨迹,以及测量光束电荷的可能损耗。 2018年,开发,制造,制造和安装在运输通道中的新传感器和梁位置测量系统的新电子设备,与旧系统相比提供更大的准确性。在新系统中,可以几乎完全消除干扰,并达到优于0.02 mm的测量精度,这足以实现通道光学器件的最佳调整,实现高旁路效率。描述了传感器,结构和电子设备结构的主要特征,分析了测量的准确性,并给出了通道中新系统的操作的一些结果。

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