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Development of a high-efficiency pulsed slow positron beam for measurements with orthopositronium in vacuum

机译:开发一种高效脉冲慢正电子束,用于在真空中测量正射锥

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摘要

We have developed a high-efficiency pulsed slow positron beam for experiments with orthopositronium in vacuum. The new pulsing scheme is based on a double-gap coaxial buncher powered by an RF pulse of appropriate shape. The modulation of the positron velocity in the two gaps is used to adjust their time-of-flight to a target. This pulsing scheme allows to minimize non-linear aberrations in the bunching process and to efficiently compress positron pulses with an initial pulse duration ranging from ∼ 300 to 50 ns into bunches of 2.3 to 0.4 ns width, respectively, with a repetition period of 1 mu s. The compression ratio achieved is ≃ 100, which is a factor 5 better than has been previously obtained with slow positron beams based on a single buncher. Requirements on the degree, to which the moderated positrons should be mono-energetic and on the precision of the waveform generation are presented. Possible applications of the new pulsed positron beam for measurements of thin films are discussed.
机译:我们开发了一种高效的脉冲慢速正电子束,用于真空中的正电子实验。新的脉冲方案基于双间隙同轴聚束器,该聚束器由适当形状的RF脉冲供电。两个间隙中正电子速度的调制用于调整它们到目标的飞行时间。这种脉冲方案可以最大程度地减小聚束过程中的非线性像差,并可以有效地将正脉冲宽度从300〜50 ns的初始脉冲持续时间分别压缩成宽度为2.3〜0.4 ns的束,重复周期为1μ s。达到的压缩比为≃100,比以前基于单个聚束器的慢正电子束所获得的压缩比高出5倍。提出了对调节后的正电子应具有单能的程度以及对波形产生精度的要求。讨论了新型脉冲正电子束在薄膜测量中的可能应用。

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