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Mass spectrometric ^3He measurement in ^4He-rich phases: Techniques and limitations for cosmogenic ^3He dating of zircon, apatite, and titanite udud

机译:富^ 4He相中的质谱^ 3He测量:锆石,磷灰石和钛矿的宇宙成因^ 3He定年的技术和局限性 ud

摘要

Recent calibration studies have expanded the range of target minerals suitable for cosmogenic ^3He dating to include U and Th-rich phases such as zircon, apatite, and titanite. These minerals often contain large amounts of radiogenic ^4He that present several analytical challenges for precise and accurate ^3He determinations. In this paper we document the abundance sensitivity and changes in the absolute sensitivity and time evolution of the ^3He signal over a wide range of ^4He pressures in a MAP 215-50 noble gas mass spectrometer. Large (>50%) decreases in sensitivity with ^4He amount arising from space charge effects were observed but can be corrected for using an isotope dilution–like technique in which ^3He spike is added to a sample midway through the mass spectrometric analysis. Large amounts of ^4He also cause the time evolution of the ^3He signal to become steeper, degrading precision of the initial peak height determination from the intercept. Taken together we find that these effects preclude reliable analysis of samples with ^4He > 1 μmol and that ^3He/^4He ratios of greater than ~5 × 10^(−10) are required to routinely measure ^3He to better than 20% precision. We present some general considerations by which to assess the probability of success of measuring cosmogenic ^3He in these phases as a function of elevation, exposure age, and helium cooling age.
机译:最近的校准研究扩大了适用于宇宙成因^ 3He定年的目标矿物的范围,以包括富铀和富Th相,例如锆石,磷灰石和钛矿。这些矿物通常含有大量的放射源^ 4He,这对于精确和准确的^ 3He测定提出了一些分析难题。在本文中,我们记录了在MAP 215-50惰性气体质谱仪中,在宽范围的^ 4He压力下,^ 3He信号的丰度灵敏度以及绝对灵敏度和时间演变的变化。观察到由于空间电荷效应而引起的^ 4He量的灵敏度大幅下降(> 50%),但可以通过同位素稀释样技术进行校正,其中在质谱分析的中途将^ 3He峰添加到样品中。大量的^ 4He也会导致^ 3He信号的时间演化变得更陡峭,从而降低了从截距确定初始峰高的精度。综上所述,我们发现这些效应妨碍了对^ 4He> 1μmol的样品进行可靠的分析,并且常规测量^ 3He要好于20%时,要求^ 3He / ^ 4He比大于〜5×10 ^(− 10)。精确。我们提出了一些一般性考虑因素,通过这些因素,可以评估在这些阶段中成功测量成宇宙^ 3He的概率与海拔,暴露年龄和氦冷却年龄之间的关系。

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