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Background reduction by a getter pump around the ionization volume of a Lamb-shift polarimeter and possible improvements of polarized ion sources

机译:用吸气泵在Lamb-shift旋光仪的电离体积附近减少背景并可能改善极化离子源

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摘要

The Koln-Julich Lamb-shift polarimeter is used to measure the nuclear polarization of the hydrogen or deuterium beam produced with the atomic-beam source for the polarized target at the ANKE spectrometer at COSY-Julich. The precision of the earlier results had been dominated by the recombination of atoms in the ionizer. Protons or deuterons from the dissociative ionization of unpolarized recombined H-2 or D-2 molecules had strongly contributed to the extracted ion beam. To suppress this effect, in the new ionizer a nonevaporable getter pump of about 2000 l/s H-2 or D-2 pumping speed surrounds the ionization volume. It reduces the extracted current of unpolarized ions, produced from the recombined molecular gas, by a factor of about 20 compared with the earlier value, which reduces the error of the polarization measurements to about 0.5%. Now the H-2 or D-2 molecules in the ionization volume predominantly are those which are contained in the incoming beam from the atomic beam source. This allows the measurement of the fraction of unpolarized molecules in the polarized atomic H or D beam. The improvement achieved is a valuable step toward the measurement of the nuclear polarization of a gas sample, extracted from the storage cell of the polarized internal gas target for the spectrometer ANKE in the COSY-Julich storage ring with the Lamb-shift polarimeter. Furthermore, the results show that the polarization of proton or deuteron beams would be increased by the installation of such a pump around the ionization volume of atomic-beam ion sources with an electron-impact ionizer. For ECR ionizers the recombined H-2 or D-2 molecules would be absorbed, whereas the noble gases, used as buffer, are not pumped by the getter material. (c) 2005 American Institute of Physics.
机译:Koln-Julich Lamb-shift旋光仪用于在COSY-Julich的ANKE光谱仪上测量由原子束源产生的氢或氘束的核极化,用于极化目标。早期结果的精度主要受离子发生器中原子的重组的影响。非极化重组H-2或D-2分子的解离电离的质子或氘核对提取的离子束有很大贡献。为了抑制这种影响,在新的离子发生器中,约2000 l / s H-2或D-2抽速的不可蒸发吸气剂泵围绕着电离体积。与先前的值相比,它将重组分子气体产生的非极化离子的提取电流降低了约20倍,从而将极化测量的误差降低了约0.5%。现在,电离体积中的H-2或D-2分子主要是包含在来自原子束源的入射束中的分子。这允许测量极化原子H或D束中非极化分子的比例。所取得的改进是迈向测量气体样品核极化的重要一步,该气体样品是从带有Lamb位移偏振计的COSY-Julich存储环中的光谱仪ANKE的极化内部气体靶的存储单元中提取的。此外,结果表明,通过在具有电子碰撞电离器的原子束离子源的电离体积周围安装这种泵,可以增加质子或氘核束的极化。对于ECR电离器,重组的H-2或D-2分子将被吸收,而用作缓冲液的稀有气体则不会被吸气剂泵入。 (c)2005年美国物理研究所。

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