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Low Frequency Radio Experiment (LORE)
[摘要] In this paper, we present a case study of Low Frequency Radio Experiment (LORE) payload to probe the corona and the solar disturbances at solar offsets greater than 2 solar radii, i.e., at frequencies below 30 MHz. The LORE can be complimentary to the planned Indian solar mission, "Aditya-L1" and its other payloads as well as synergistic to ground-based interplanetary scintillation (IPS) observations, which are routinely carried out by the Ooty Radio Telescope. We discuss the baseline design and technical details of the proposed LORE and its particular suitability for providing measurements on the detailed time and frequency structure of fast drifting type-III and slow drifting type-II radio bursts with unprecedented time and frequency resolutions. We also brief the gonio-polarimetry, which is possible with better-designed antennas and state-of-the-art electronics, employing FPGAs and an intelligent data management system. These would enable us to make a wide range of studies, such as nonlinear plasma processes in the Sun-Earth distance, in-situ radio emission from coronal mass ejections (CMEs), interplanetary CME driven shocks, nature of ICMEs driving decelerating IP shocks and space weather effects of solar wind interaction regions.
[发布日期]  [发布机构] Radio Astronomy Centre, National Centre for Radio Astrophysics (TIFR), Ooty, India^1;National Centre for Radio Astrophysics (TIFR), Pune, India^2;Department of Electronics and Tele-Communication, College of Engineering, Pune, India^3
[效力级别]  [学科分类] 
[关键词] Coronal mass ejection;Intelligent data managements;Interplanetary scintillation;Solar disturbances;Solar wind interactions;Space weather effect;Technical details;Time and frequencies [时效性] 
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