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An Accelerator Measurement of Atomic X-ray Yields in Exotic Atoms and Implications for an Antideuteron-Based Dark Matter Search

机译:异质原子中原子X射线产率的加速器测量及其对基于氘的暗物质搜索的意义

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摘要

The General AntiParticle Spectrometer (GAPS) is a novel approach for indirect dark mat- ter searches that exploits cosmic antideuterons. The low energy antideuteron provides a clean dark matter signature, since the antideuteron production by cosmic ray interactions is suppressed at low energy, while the WIMP-WIMP annihilation can produce low energy an- tideuterons. GAPS utilizes a distinctive detection method using atomic X-rays and charged particles from the exotic atom as well as the timing, stopping range and dE/dX energy deposit of the incoming particle, which provides excellent antideuteron identification. Prior to the future balloon experiment, an accelerator test was conducted in 2004 and 2005 at KEK, Japan to measure the atomic X-rays of antiprotonic exotic atoms produced by different targets. In 2005, solid targets were tested to avoid the bulky fixture of the gas target and also to have flexibility of the detector geometry in the flight experiment. Recently, we have developed a simple cascade model and the parameters were fitted with the experimental results. The cascade model was extended to the antideuteronic exotic atom for the GAPS flight experiment. GEANT4 simulation was conducted to obtain optimized cuts on the timing, stopping range, dE/dX energy deposit, atomic X-rays, and annihilation products, in order to eliminate the background. Based on the simulation results, we have estimated the GAPS sensitivity with the antideuteron flux. GAPS has a strong potential to detect a dark matter signature.
机译:通用抗粒子光谱仪(GAPS)是一种利用宇宙抗氘核进行间接暗物质搜索的新颖方法。低能抗氘核可提供干净的暗物质特征,因为在低能下可抑制宇宙射线相互作用产生的抗氘核,而WIMP-WIMP ni灭可产生低能抗衡离子。 GAPS利用独特的检测方法,使用原子X射线和来自外来原子的带电粒子以及进入粒子的时间,停止范围和dE / dX能量沉积,可提供出色的抗氘核识别能力。在未来的气球实验之前,2004年和2005年在日本的KEK进行了加速器测试,以测量由不同目标产生的反质子外来原子的X射线。在2005年,对实心目标进行了测试,以避免气体目标的庞大固定,并且在飞行实验中还具有检测器几何形状的灵活性。最近,我们开发了一个简单的级联模型,并将参数与实验结果进行了拟合。将级联模型扩展到用于GAPS飞行实验的抗氘异源原子。为了消除背景,进行了GEANT4仿真,以获得时间,停止范围,dE / dX能量沉积,原子X射线和an灭产物的最佳切割。根据仿真结果,我们估计了具有抗氘核通量的GAPS灵敏度。 GAPS具有检测暗物质特征的强大潜力。

著录项

  • 作者

    Aramaki Tsuguo;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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