首页    期刊浏览 2024年09月18日 星期三
登录注册

文章基本信息

  • 标题:Thermal fluctuation fields in basalts
  • 其他标题:Thermal fluctuation fields in basalts
  • 本地全文:下载
  • 作者:Adrian R. Muxworthy ; David Heslop ; Daniel M. Michalk
  • 期刊名称:Earth, Planets and Space
  • 电子版ISSN:1880-5981
  • 出版年度:2009
  • 卷号:61
  • 期号:1
  • 页码:111-117
  • DOI:10.1186/BF03352890
  • 出版社:Springer Verlag
  • 摘要:The thermal fluctuation field ( H f ) is central to thermoremanent acquisition models, which are key to our understanding of the reliability of palaeomagnetic data, however, H f is poorly quantified for natural systems. We report H f determinations for a range of basalts, made by measuring rate-dependent hysteresis. The results for the basalts were found to be generally consistent within the space of H f versus the coercive force H C , i.e., the “Barbier plot”, which is characterized by the empirically derived relationship; log H f ∝ 1.3 log H C obtained from measurements on a wide range of different magnetic materials. Although the basalts appear to occupy the correct position within the space of the Barbier plot, the relationship within the sample set, log H f ∝ 0.54 log H C , is different to the Barbier relationship. This difference is attributed to the original Barbier relationship being derived from a wide range of different synthetic magnetic materials, and not for variations within one material type, as well as differences in methodology in determining H f . We consider the relationship between H C and the activation volume, υ act , which was found to be H C ∝ υ ***** for our mineralogically homogeneous samples. This compares favourably with theoretical predictions, and with previous empirical estimates based on the Barbier plot, which defined the relationship as H C ∝****.
  • 关键词:Basalt ;thermoremanence ;thermal fluctuations ;rock magnetism
国家哲学社会科学文献中心版权所有