...
首页> 外文期刊>Radiocarbon >Radiocarbon calibration and application to geophysics, solar physics, and astrophysics
【24h】

Radiocarbon calibration and application to geophysics, solar physics, and astrophysics

机译:放射性碳校准及其在地球物理学,太阳物理学和天体物理学中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

This paper includes a brief history of the calibration of the radiocarbon time scale from the first recognition of the necessity of calibration in 1962 to INTCAL98. Thirty-six years of effort by dendrochronologists and the C-14 community have pushed the tree-ring calibration back to 11,854 yr BP. All of this part of the calibration has been done by high-precision beta counting. Uranium-thorium (U-Th) dating of coral samples coupled with accelerator mass spectrometry (AMS) measurement of C-14 has extended a fairly detailed calibration back beyond the Bolling warm episode to 15,000 BP. Earlier than 15,000 BP, piecewise linear approximation extends INTCAL98 calibration to 24,200 BP. Blending 1-, 2-, 3-, 10-, and 20-yr tree-ring samples containing regional and data offsets into a decadal time scale does not make an ideal error and bias free Delta(14)C record. Nevertheless, spectral analysis reveals some statistically significant fundamental frequencies as well as interesting "beat" frequencies and the second harmonic of the around 208-yr cycle that is considered to be solar in origin. Although, some very prominent peaks such as the 88-yr (Gleissberg) are clearly solar in origin, some of the lower frequencies such as of the 512-yr period may have an origin in thermohaline circulation. Thus, INTCAL98 provides useful data for geophysical and solar physics research. Lastly, single year Delta(14)C analysis would be useful for revealing invaluable information for solar physics, astrophysics and geophysics not accessible by decadal data. We provide several examples. [References: 73]
机译:本文包括从1962年首次认识到校准的必要性到INTCAL98的放射性碳时间标度校准的简要历史。树轮年代学家和C-14社区经过36年的努力,将树环校准推回了11854年BP。校准的所有这部分都是通过高精度的beta计数完成的。珊瑚样品的铀-(U-Th)测年,加上C-14的加速器质谱(AMS)测量,已将相当详细的校准范围扩展到了Bolling暖期以外,达到15,000 BP。低于15,000 BP之前,分段线性逼近将INTCAL98校准扩展到24,200 BP。将包含区域和数据偏移量的1年,2年,3年,10年和20年的树年轮值样本混合到十年时间尺度中,并不会产生理想的误差和无偏差的Delta(14)C记录。尽管如此,频谱分析仍显示出一些具有统计意义的基本频率,有趣的“拍频”频率以及大约208年周期的二次谐波,这些谐波被认为是太阳起源的。尽管一些非常突出的峰(例如88年峰(格莱斯堡))显然是太阳起源的,但某些较低的频率(例如512年峰)可能是热盐环流的起源。因此,INTCAL98为地球物理和太阳物理研究提供了有用的数据。最后,一年的Delta(14)C分析将有助于揭示十年数据无法获得的太阳物理学,天体物理学和地球物理学的宝贵信息。我们提供了几个示例。 [参考:73]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号