Digitized Continuous Magnetic Recordings for the August/September 1859 Storms From London, UK

Author:

Beggan C. D.1ORCID,Clarke E.1,Lawrence E.1,Eaton E.12,Williamson J.1,Matsumoto K.34,Hayakawa H.356

Affiliation:

1. British Geological Survey Edinburgh UK

2. Now at University of Leeds Leeds UK

3. Institute for Space‐Earth Environmental Research Nagoya University Nagoya Japan

4. Now at New Jersey Institute of Technology Newark NJ USA

5. Institute for Advanced Research Nagoya University Nagoya Japan

6. RAL Space Chilton Oxfordshire UK

Abstract

AbstractDedicated scientific measurements of the strength and direction of the Earth's magnetic field began at Greenwich and Kew observatories in London, United Kingdom, in the middle of the nineteenth century. Using advanced techniques for the time, collimated light was focussed onto mirrors mounted on free‐swinging magnetized needles which reflected onto photographic paper, allowing continuous analog magnetograms to be recorded. By good fortune, both observatories were in full operation during the so‐called Carrington storm in early September 1859 and its precursor storm in late August 1859. Based on digital images of the magnetograms and information from the observatory yearbooks and scientific papers, it is possible to scale the measurements to International System of Units (SI units) and extract quasi‐minute cadence spot values. However, due to the magnitude of the storms, the periods of the greatest magnetic field variation were lost as the traces moved off‐page. We present the most complete digitized magnetic records to date of the 10‐day period from 25 August to 5 September 1859 encompassing the Carrington storm and its lesser recognized precursor on 28 August. We demonstrate the good correlation between observatories and estimate the instantaneous rate of change of the magnetic field.

Publisher

American Geophysical Union (AGU)

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Challenging Ring‐Current Models of the Carrington Storm;Journal of Geophysical Research: Space Physics;2024-09

2. On the uncertain intensity estimate of the 1859 Carrington storm;Journal of Space Weather and Space Climate;2024

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