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Ionospheric behavior over Europe during the solar eclipse of 3 October 2005
Institution:1. DLR Institute of Communications and Navigation, Kalkhorstweg 53, D-17235 Neustrelitz, Germany;2. Observatorio del Ebro, Universitat Ramon Llull, Crta. de l’Observatori No. 8, E-43520 Roquetes, Spain;3. Institute of Atmospheric Physics, Bocni II/1401, 14131 Praha 4, Czech Republic;4. Rutherford Appleton Laboratory, Chilton OX11 0QX, UK;1. Institute of Atmospheric Physics of ASCR, Prague, Czech Republic;2. Rutherford Appleton Laboratory, Chilton, United Kingdom;1. Department of Physics and Astronomy, George Mason University, Fairfax, Virginia, USA;2. Institute of Atmospheric Physics, Czech Academy of Sciences, Czech Republic;3. Bulgarian Academy of Sciences, Department of Space Weather, Bulgaria;4. University of New Brunswick, Canada;1. Department of Physics, Andhra University, Visakhapatnam 530003, India;2. National Atmospheric Research Laboratory, Gadanki 517112, India;1. Dr. K. S. Krishnan Geomagnetic Research Laboratory, Indian Institute of Geomagnetism, Allahabad 221505, India;2. School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA;3. Atmospheric Research Lab, Physics Department, Banaras Hindu University, Varanasi 221005, India;1. Pakistan Space and Upper Atmosphere Research Commission (SUPARCO), P.O. Box 8402, Karachi 75270, Pakistan;2. China Research Institute of Radiowave Propagation (CRIRP), P.O. Box 6301, Qingdao 266107, China;3. SERVIR-Mekong, Asian Disaster Preparedness Center, SM Tower, 24th Floor, 979/69 Paholyothin Road, Samsen Nai Phayathai, Bangkok 10400, Thailand;4. Institute of Space and Planetary Astrophysics (ISPA), University of Karachi, Karachi 75270, Pakistan
Abstract:An annular eclipse occurred over Europe in the morning hours of 3 October 2005. The well-defined obscuration function of the solar radiation during the eclipse provided a good opportunity to study the ionospheric/thermospheric response to solar radiation changes. Since the peak electron density behavior of the ionospheric F2 layer follows the local balance of plasma production, loss and transport, the ionospheric plasma redistribution processes significantly affect the shape of the electron density profile. These processes are discussed here based on a comparison of vertical incidence sounding (VS) and vertical total electron content (TEC) data above-selected ionosonde stations in Europe. The equivalent slab thickness, derived with a time resolution of 10 min, provides relatively good information on the variation of the electron density profile during the eclipse. The computations reveal an increased width of the ionosphere around the maximum phase. As indicated by the available measurements over Spain, the photo production is significantly reduced during the event leading to a slower increase of the total ionization in comparison with the neighboring days. The supersonic motion of the Moon's cool shadow through the atmosphere may generate atmospheric gravity waves that propagate upward and are detectable as traveling ionospheric disturbances at ionospheric heights. High-frequency (HF) Doppler shift spectrograms were recorded during the eclipse showing a distinct disturbance along the eclipse path. Whereas the ionosonde measurements at the Ebro station/Spain in the vicinity of the eclipse path reveal the origin of the wave activity in the lower thermosphere below about 180 km altitude, the similar observations at Pruhonice/Czech Republic provide arguments to localize the origin of the abnormal waves in the middle atmosphere well below the ionospheric heights. Although ionosonde and HF Doppler measurements show enhanced wave activity, the TEC data analysis does not, which is an indication that the wave amplitudes are too small for detecting them via this interpolation method. The total ionization reduces up to about 30% during the event. A comparison with similar observations from the solar eclipse of 11 August 1999 revealed a quite different ionospheric behavior at different latitudes, a fact that needs further investigation.
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