Abstract
This paper discusses the strategic importance of contemporary ionospheric science. It outlines some key features of the evolution of the science from the first practical experiments in the 1920s through to the diverse inter-disciplinary science of today. This science includes fundamental studies of partially ionised plasmas and of the complex systems that arise when those plasmas are coupled to neutral atmospheres and magnetospheres. However, the science also has great potential to deliver societal benefits if the science can be refined to obtain a deep physical understanding of ionospheric phenomena and that understanding is then transitioned into use by operational services such as forecasts of ionospheric conditions. Thus, ionospheric science is now very similar in form to other environment sciences and, the same as them, needs to be positioned in a diverse scientific culture that supports the full range of science research, including not only curiosity-driven studies, but also targeted research to deepen our physical understanding to a level that is sufficient to enable a transition to operational services. That diversity also includes support for that transition and also facilitates feedback from operations teams to researchers. Such feedback can be a powerful stimulus for future research.
Funder
Science and Technology Facilities Council
Subject
Atmospheric Science,Environmental Science (miscellaneous)
Reference59 articles.
1. Larousse Encyclopedia of Astronomy (English Edition);Rudaux,1959
2. EISCAT: early history and the first ten years of operation
3. The EISCAT Scientific Association and the EISCAT Svalbard Radar Project.
4. Ionospheric propagation;Cannon,2003
5. The effects of space weather on radio systems;Cannon,2004
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