Peter, H.; Chitta, L. P.; Chen, F.; Pontin, D. I.; Winebarger, A. R.; Golub, L.; Savage, S. L.; Rachmeler, L. A.; Kobayashi, K.; Brooks, D. H.et al.; Cirtain, J. W.; De Pontieu, B.; McKenzie, D. E.; Morton, R. J.; Testa, P.; Tiwari, S. K.; Walsh, R. W.; Warren, H. P.: Parallel Plasma Loops and the Energization of the Solar Corona. The Astrophysical Journal 933, p. 153 (2022)
Chen, Y.; Przybylski, D.; Peter, H.; Tian, H.; Auchère, F.; Berghmans, D.: Transient small-scale brightenings in the quiet solar corona: A model for campfires observed with Solar Orbiter. Astronomy and Astrophysics 656, L7 (2021)
Chitta, L. P.; Peter, H.; Young, P.R.: Extreme-ultraviolet bursts and nanoflares in the quiet-Sun transition region and corona. Astronomy and Astrophysics 647, A159 (2021)
Li, L.; Peter, H.; Chitta, L. P.; Song, H.: On-disk Solar Coronal Condensations Facilitated by Magnetic Reconnection between Open and Closed Magnetic Structures. The Astrophysical Journal 910 (2), 82 (2021)
Li, L.; Peter, H.; Chitta, L. P.; Song, H.: Formation of a Solar Filament by Magnetic Reconnection and Coronal Condensation. The Astrophysical Journal Letters 919 (2), L21 (2021)
Li, L.-P.; Peter, H.; Chitta, L. P.; Song, H.-Q.: Revisiting the formation mechanism for coronal rain from previous studies. Research in Astronomy and Astrophysics 21 (10), 255 (2021)
Li, L.; Peter, H.; Chitta, L. P.; Song, H.; Ji, K.; Xiang, Y.: Magnetic Reconnection between Loops Accelerated By a Nearby Filament Eruption. The Astrophysical Journal 908 (2), 213 (2021)
Ni, L.; Chen, Y.; Peter, H.; Tian, H.; Lin, J.: A magnetic reconnection model for hot explosions in the cool atmosphere of the Sun. Astronomy and Astrophysics 646, A88 (2021)
The Uranian magnetic field is more expansive than previously thought, according to newly analyzed data from Voyager 2, making it easier to search for moons with oceans.
The Planetary Plasma Environments group (PPE) has a strong heritage in the exploration of planetary magnetospheres and space plasma interactions throughout the solar system. It has contributed instruments to several past missions that flew-by or orbited Jupiter (Galileo, Cassini, Ulysses). The PPE participates in the JUICE mission by contributing hardware and scientific expertise to the Particle Environment Package (PEP).