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Recent developments and future plans for the accelerator based slow positron facilities at AIST

机译:基于AICK的加速器慢朗泉设施的最新发展和未来计划

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We describe the recent installation of a new slow positron beamline at AIST and our plans to develop a dedicated superconducting accelerator for positron production. The new positron beamline is already installed and should be operational by the end of this fiscal year (March 2012). Initially positrons will be generated using a 70 MeV electron beam from the existing accelerator directed onto a newly installed converter and moderator assembly. The beamline has two experimental ports both dedicated to positron lifetime spectroscopy, one port with a focused beam (diameter ~ 30 μm) and the other unfocused (~ 10 mm). A superconducting accelerator for positron production is currently under development. When completed, it will deliver a high frequency (~ MHz), high current (~ mA), short pulse length (< 100 ps) beam to the positron production target. We investigate the possibility of transporting the positron pulses thus produced directly onto samples for lifetime measurement. Such a scheme would remove the necessity for pulse stretching and chopping which is required with the existing LINAC and should allow for greatly increased slow positron transport efficiency.
机译:我们描述了最近在AIST中安装了一个新的慢正数梁线,我们计划开发用于正电子生产的专用超导加速器。新的正电子束线已经安装,并应在本财政年度结束时(2012年3月)运作。最初将使用来自现有加速器的70 MeV电子束来生成,这些加速器指向新安装的转换器和主持人组件。光束线有两种专用于正电子寿命光谱的实验端口,一个端口,带有聚焦光束(直径约为30μm),另一个端口和另一个未聚焦(〜10 mm)。目前正在开发上发育正电子生产超导加速器。完成后,它将提供高频(〜MHz),高电流(〜mA),短脉冲长度(<100 ps)光束到正电子生产目标。我们调查将正电子脉冲直接输送到样品上以进行寿命测量。这种方案将消除具有现有LINAC所需的脉冲拉伸和斩波的必要性,并且应允许大大提高正电子运输效率。

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