Chifu, I.; Wiegelmann, T.; Inhester, B.: Coronal magnetic field modeling using stereoscopic constraints. 15th European Solar Physics Meeting, Budapest, Hungary (2017)
Wiegelmann, T.: 3D-Coronal magnetic fields. Theoretical and observational approaches to the solar magnetic field: Achievements and remaining problems - conference in honor of Prof. Takashi Sakurai's career -, Tokyo, Japan (2016)
Wiegelmann, T.: The Magnetic Field of the Sun. AG 2016, Splinter meeting: The Role and Interaction of Stellar Magnetic Fields: From the Stellar Surface to the Interstellar Medium, Bochum, Germany (2016)
Wiegelmann, T.: Coronal modelling for Solar Orbiter. 16th Solar Orbiter SWT Meeting Numerical modeling support for Solar Orbiter (special MADAWG session), Göttingen, Germany (2015)
Wiegelmann, T.: Solar magnetic activity and space weather. Workshop and Research visit on: The synergy of magnetic reconnection and waves in evolution of the solar corona, Weihai, China (2015)
Wiegelmann, T.: Solar coronal magnetic fields: Source region for space weather activity. 4. Nationaler Weltraumwetterworkshop, Neustrelitz, Germany (2015)
Wiegelmann, T.; The Sunrise Team: Selfconsistent magnetostatic modelling of the solar atmosphere from Sunrise/IMAX measurements. AG Annual Meeting 2014, Bamberg, Germany (2014)
Images from ESA’s Solar Orbiter offer the best look yet at a source region of the solar wind - and challenge our view of the continuous particle stream from the Sun.
Deciphering the magnetic origins of the Sun's hot corona: developing a framework for coronal heating by probing the elusive photosphere-corona connection
Using unique observational data and computer simulations, the MPS scientist is striving to understand the incredibly hot temperatures in the solar corona.
For the first time, images of the Sun have been taken from a distance of only 77 million kilometres enabling a completely new view of our star possible.
In his doctoral thesis, Sudip Mandal investigated how special pressure waves help maintain temperatures of several million degrees in the outermost solar atmosphere.