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Integrating High Resolution Solar Physics

Sector: Education • Location: Germany, Spain, Norway, Sweden, France, Italy, United Kingdom, Czechia, Belgium, Croatia, Slovakia, Switzerland, Austria, Russia, Japan, United States

Source: EU Funding & Tenders Portal

Project
Ended

This project aims at integrating the major European infrastructures in the field of high-resolution solar physics. The following actions will be taken: (i) realise transnational access to all European users; (ii) integrate small communities and foster European collaboration; (ii) enhance and spread data acquisition and processing expertise to the Europe-wide community; (iii) increase the impact

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The project “Integrating High Resolution Solar Physics” is an infrastructure initiative in the Education sector, located in Germany, Spain, Norway, Sweden, France, Italy, United Kingdom, Czechia, Belgium, Croatia, Slovakia, Switzerland, Austria, Russia, Japan, United States. Taiyo aggregates data on it from EU Funding & Tenders Portal.

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Description

Description

This project aims at integrating the major European infrastructures in the field of high-resolution solar physics. The following actions will be taken: (i) realise transnational access to all European users; (ii) integrate small communities and foster European collaboration; (ii) enhance and spread data acquisition and processing expertise to the Europe-wide community; (iii) increase the impact of high-resolution data by offering science-ready data and facilitating their retrieval and usage; (iv) encourage combination of space and ground-based data by providing unified access to pertinent data repositories; (v) foster synergies between observational and theoretical research communities by organising meetings where each presents state-of-the-art methodologies; (vi) train a new generation through student schools, a mobility program, and grant program to attend conferences; (vii) develop innovative post-focus instrumentation; (viii) develop and build next generation devices to correct for atmospheric turbulence; (ix) lay foundations for combined use of synoptic and high-resolution facilities on ground and in space (x) dissemination activities towards society. The project involves all pertinent European research institutions, infrastructures, and data repositories. Together, these represent first-class facilities. The additional participation by private companies and non-European research institutions maximizes the impact on the world-wide scale. In particular, the project achievements will be of principal importance in defining the exploitation of the future 4-meter European Solar Telescope.

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High

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100%

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