论文标题

MUON诱导的X射线发射(MIXE)技术的连续恒线源的表征

Characterization of a continuous muon source for the Muon-Induced X-ray Emission (MIXE) Technique

论文作者

Biswas, Sayani, Gerchow, Lars, Luetkens, Hubertus, Prokscha, Thomas, Antognini, Aldo, Berger, Niklaus, Cocolios, Thomas Elias, Dressler, Rugard, Indelicato, Paul, Jungmann, Klaus, Kirch, Klaus, Knecht, Andreas, Papa, Angela, Pohl, Randolf, Pospelov, Maxim, Rapisarda, Elisa, Reiter, Peter, Ritjoho, Narongrit, Roccia, Stephanie, Severijns, Nathal, Skawran, Alexander, Vogiatzi, Stergiani Marina, Wauters, Frederik, Willmann, Lorenz, Amato, Alex

论文摘要

物质表征的工具箱从未比今天更富有。各种粒子和相互作用方法的巨大进展为研究对象的几乎所有特性提供了访问。但是,今天对地下区域的层析成像分析仍然是一个挑战。在这方面,MUON诱导的X射线发射(Mixe)技术已经看到了高强度振荡光束的可用性。我们在这里报告了Paul Scherrer Institute(PSI)进行的一项研究。它表明,没有任何光束时结构会导致堆积事件较低,并且每个样品或数据点少于一小时的获取时间少于一个小时的获取时间。这种表演创造了向更广泛的受众开放这种技术的观点,以便对非破坏性和深度敏感元素构图进行例行研究,例如在稀有和珍贵的样本中。我们使用了已知元素和厚度的异质结构样品,我们成功地检测了特征性的Muonic X射线,在原子捕获负值期间发出的特征性Muonic X射线,以及由MUON核捕获引起的伽马射线,表征了Mixe在PSI处的Mixe功能。该样本强调连续光束的质量,以及以高速率的特殊SNR。这种敏感性将使Mixe领域的全新统计上的全新方面,例如元素3D-tomography和化学分析。因此,我们目前正在推进概念验证实验,目的是创建一个完整的永久操作用户站,以使更广泛的科学社区以及行业可用。

The toolbox for material characterization has never been richer than today. Great progress with all kinds of particles and interaction methods provide access to nearly all properties of an object under study. However, a tomographic analysis of the subsurface region remains still a challenge today. In this regard, the Muon-Induced X-ray Emission (MIXE) technique has seen rebirth fueled by the availability of high intensity muon beams. We report here a study conducted at the Paul Scherrer Institute (PSI). It demonstrates that the absence of any beam time-structure leads to low pile-up events and a high signal-to-noise ratio (SNR) with less than one hour acquisition time per sample or data point. This performance creates the perspective to open this technique to a wider audience for the routine investigation of non-destructive and depth-sensitive elemental compositions, for example in rare and precious samples. Using a hetero-structured sample of known elements and thicknesses, we successfully detected the characteristic muonic X-rays, emitted during the capture of a negative muon by an atom, and the gamma-rays resulting from the nuclear capture of the muon, characterizing the capabilities of MIXE at PSI. This sample emphasizes the quality of a continuous beam, and the exceptional SNR at high rates. Such sensitivity will enable totally new statistically intense aspects in the field of MIXE, e.g. elemental 3D-tomography and chemical analysis. Therefore, we are currently advancing our proof-of-concept experiments with the goal of creating a full fledged permanently operated user station to make MIXE available to the wider scientific community as well as industry.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源