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http://dx.doi.org/10.5303/JKAS.2005.38.4.437

AN EVALUATION OF THE SOLAR RADIO BURST LOCATOR (SRBL) AT OVRO  

HwangBo, J.E. (Department of Astronomy and Space Science, College of Natural Sciences and Institute for Basic Science Research, Chungbuk National University)
Bong, Su-Chan (Korea Astronomy and Space Science Institute)
Cho, K.S. (Korea Astronomy and Space Science Institute)
Moon Y.J. (Korea Astronomy and Space Science Institute)
Lee, D.Y. (Department of Astronomy and Space Science, College of Natural Sciences and Institute for Basic Science Research, Chungbuk National University)
Park, Y.D. (Korea Astronomy and Space Science Institute)
Gary Dale E. (Physics Department, NJIT, University Heights, Newark)
Dougherty Brian L. (Los Alamos National Laboratory, Los Alamos Natl.)
Publication Information
Journal of The Korean Astronomical Society / v.38, no.4, 2005 , pp. 437-443 More about this Journal
Abstract
The Solar Radio Burst Locator (SRBL) is a spectrometer that can observe solar microwave bursts over a wide band (0.1-18 GHz) as well as detect the burst locations without interferometry or mechanical scanning. Its prototype has been operated at Owens Valley Radio Observatory (OVRO) since 1998. In this study, we have evaluated the capability of the SRBL system in flux and radio burst location measurements. For this, we consider 130 microwave bursts from 2000 to 2002. The SRBL radio fluxes of 53 events were compared with the fluxes from USAF/RSTN and the burst locations of 25 events were compared with the optical flare locations. From this study, we found: (1) there is a relatively good correlation (r = 0.9) between SRBL flux and RSTN flux; (2) the mean location error is about 8.4 arcmin and the location error (4.7 arcmin) of single source events is much smaller than that (14.9 arcmin) of multiple source events; (3) the minimum location error usually occurred just after the starting time of burst, mostly within 10 seconds; (4) there is a possible anti-correlation (r = -0.4) between the pointing error of SRBL antenna and the location error. The anti-correlation becomes more evident (r=-0.9) for 6 strong single source events associated with X-class flares. Our results show that the flux measurement of SRBL is consistent with that of RSTN, and the mean location error of SRBL is estimated to be about 5 arcmin for single source events.
Keywords
instrumentation: spectrographs; Sun: radio radiation; techniques: miscellaneous;
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