The Sunrise balloon-borne solar observatory consists of a 1m aperture Gregory telescope, a UV filter imager, an imaging vector polarimeter, an image stabilization system and further infrastructure. The first science flight of Sunrise yielded high-quality data that reveal the structure, dynamics and evolution of solar convection, oscillations and magnetic fields at a resolution of around 100 km in the quiet Sun. After a brief description of instruments and data, first qualitative results are presented. In contrast to earlier observations, we clearly see granulation at 214 nm. Images in Ca II H display narrow, short-lived dark intergranular lanes between the bright edges of granules. The very small-scale, mixed-polarity internetwork fields are found to be highly dynamic. A significant increase in detectable magnetic flux is found after phase-diversity-related reconstruction of polarization maps, indicating that the polarities are mixed right down to the spatial resolution limit, and probably beyond.
@article{arxiv.1008.3460,
title = {Sunrise: instrument, mission, data and first results},
author = {S. K. Solanki and P. Barthol and S. Danilovic and A. Feller and A. Gandorfer and J. Hirzberger and T. L. Riethmueller and M. Schüssler and J. A. Bonet and V. Martínez Pillet and J. C. del Toro Iniesta and V. Domingo and J. Palacios and M. Knölker and N. Bello González and T. Berkefeld and M. Franz and W. Schmidt and A. M. Title},
journal= {arXiv preprint arXiv:1008.3460},
year = {2015}
}