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Highlights of the Brazilian Solar Spectroscope
Authors:HS Sawant  JR Cecatto  H Mészárosová  C Faria  FCR Fernandes  M Karlický  MC de Andrade
Institution:1. National Space Research Institute (INPE), Ave. dos Astronautas 1758, 1221-0000 São José dos Campos, SP, Brazil;2. Astronomical Institute, Czech Academy of Sciences, CZ-25165 Ond?ejov, Czech Republic;3. Department of Computer Sciences, PUC Minas, Poços de Caldas, MG, Brazil;4. Institute of Research and Development (IP&D – UNIVAP), Ave. Shishima Hifum 2911, Urbanova, 12244-000 São José dos Campos, SP, Brazil
Abstract:The digital, decimetric (950–2500 MHz) Brazilian Solar Spectroscope (BSS, Sawant, H.S., Subramanian, K.R., Faria, C., et al. Brazilian Solar Spectroscope (BSS). Solar Phys. 200, 167–176, 2001) with high time (10–1000 ms) and frequency (1–10 MHz) resolution is in regular operation since April, 1998, at the National Space Research Institute (INPE) at São José dos Campos, Brazil. The BSS has now been upgraded with a new digital data acquisition and data processing system. The new version of the BSS has improved the observational possibilities with the capability to record up to 200 frequency channels available in the selectable frequency range 950–2500 MHz. The GPS receiver permits the acquisition of data with time accuracy in the order of 0.1 ms. The software system of the BSS is composed by two distinct modules: the first, data acquisition system provides a flexible Graphical User Interface (GUI) that allows one to choose the observational parameters. The second module is the real time visualization system that permits real time visualization of the observed dynamic spectrum and additionally allows procedures for visualization and preliminary analysis of the recorded solar spectra. Using the new visualization system, we have realized two new types of dm-radio fine structures: narrow band type III bursts with positive as well as negative group frequency drift and dots emissions arranged in zebra-like and fiber-like chains. Furthermore, we have found flare generated fast wave trains according to their tadpole signature in wavelet power spectra for a decimetric type IV radio event (June 6, 2000 flare).
Keywords:Sun  Instrumentation  Spectroscope  Corona  Radio radiation
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