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高能物理 - 现象学

arXiv:hep-ph/9511209v1 (hep-ph)
[提交于 1995年11月2日 ]

标题: 氚的β衰变中的原子效应

标题: Atomic effects in tritium beta decay

Authors:Lowell Brown, Chengxing Zhai
摘要: The electron neutrino mass has been measured in several tritium beta decay experiments. These experiments are sensitive to a small neutrino mass because the energy release of the decay is small. But the very smallness of the energy release implies that the Coulomb interactions of the slowly moving emitted beta electron are relatively large. Using field theoretic techniques, we derive a systematic and controlled expansion which accounts for the Coulomb effects, including the mutual interaction of the beta ray electron and the electron in the final $^3{\rm He}^+$ ion. In our formulation, an effective potential which describes the long range Coulomb force experienced by the beta ray is introduced to ensure that our expansion is free of infrared divergences. Both the exclusive differential decay rate to a specific final $^3{\rm He}^+$ state and the inclusive differential decay rate are calculated to order $\eta^2$, where $\eta$ is the usual Coulomb parameter. We analyze the order $\eta^2$ correction to the beta ray spectrum and estimate how it may affect the neutrino mass squared parameter and the endpoint energy when this corrected spectrum is used to compare with the experiments. We find that the effect is small.
摘要: The electron neutrino mass has been measured in several tritium beta decay experiments. These experiments are sensitive to a small neutrino mass because the energy release of the decay is small. But the very smallness of the energy release implies that the Coulomb interactions of the slowly moving emitted beta electron are relatively large. Using field theoretic techniques, we derive a systematic and controlled expansion which accounts for the Coulomb effects, including the mutual interaction of the beta ray electron and the electron in the final $^3{\rm He}^+$ ion. In our formulation, an effective potential which describes the long range Coulomb force experienced by the beta ray is introduced to ensure that our expansion is free of infrared divergences. Both the exclusive differential decay rate to a specific final $^3{\rm He}^+$ state and the inclusive differential decay rate are calculated to order $\eta^2$, where $\eta$ is the usual Coulomb parameter. We analyze the order $\eta^2$ correction to the beta ray spectrum and estimate how it may affect the neutrino mass squared parameter and the endpoint energy when this corrected spectrum is used to compare with the experiments. We find that the effect is small.
评论: 81页,15个Postscript图形,使用了一个非标准的样式文件“table.sty”,该文件附加在LaTeX文件的末尾
主题: 高能物理 - 现象学 (hep-ph) ; 核理论 (nucl-th)
引用方式: arXiv:hep-ph/9511209
  (或者 arXiv:hep-ph/9511209v1 对于此版本)
  https://doi.org/10.48550/arXiv.hep-ph/9511209
通过 DataCite 发表的 arXiv DOI
期刊参考: UW/PT-95-16, PURD-TH-95-11
相关 DOI: https://doi.org/10.1006/aphy.1996.0072
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来自: ChengXing Zhai [查看电子邮件]
[v1] 星期四, 1995 年 11 月 2 日 06:37:51 UTC (76 KB)
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