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http://dx.doi.org/10.5140/JASS.2012.29.4.329

Diurnal and Seasonal Variations in Mid-Latitude Geomagnetic Field During International Quiet Days: BOH Magnetometer  

Hwang, Junga (Solar and Space Environment Research Group, Korea Astronomy and Space Science Institute)
Kim, Hyang-Pyo (Solar and Space Environment Research Group, Korea Astronomy and Space Science Institute)
Park, Young-Deuk (Solar and Space Environment Research Group, Korea Astronomy and Space Science Institute)
Publication Information
Journal of Astronomy and Space Sciences / v.29, no.4, 2012 , pp. 329-336 More about this Journal
Abstract
Korea Astronomy and Space Science Institute researchers have installed and operated magnetometers at Bohyunsan Observatory to measure the Earth's magnetic field variations in South Korea. In 2007, we installed a fluxgate magnetometer (RFP-523C) to measure H, D, and Z components of the geomagnetic field. In addition, in 2009, we installed a Overhauser proton sensor to measure the absolute total magnetic field F and a three-axis magneto-impedance sensor for spectrum analysis. Currently three types of magnetometer data have been accumulated. In this paper, we use the H, D, Z components of fluxgate magnetometer data to investigate the characteristics of mid-latitude geomagnetic field variation. To remove the temporary changes in Earth's geomagnetic filed by space weather, we use the international quiet days' data only. In other words, we performed a superposed epoch analysis using five days per each month during 2008-2011. We find that daily variations of H, D, and Z shows similar tendency compared to previous results using all days. That is, H, D, Z all three components' quiet intervals terminate near the sunrise and shows maximum 2-3 hours after the culmination and the quiet interval start from near the sunset. Seasonal variations show similar dependences to the Sun. As it becomes hot season, the geomagnetic field variation's amplitude becomes large and the quiet interval becomes shortened. It is well-known that these variations are effects of Sq current system in the Earth's atmosphere. We confirm that the typical mid-latitude geomagnetic field variations due to the Sq current system by excluding all possible association with the space weather.
Keywords
BOH magnetometer; mid-latitude geomagnetic field; Sq current;
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Times Cited By KSCI : 2  (Citation Analysis)
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