In the first orbit of the Parker Solar Probe (PSP), in situ thermal plasma and magnetic field measurements were collected as close as 35 R Sun from the Sun, an environment that had not been previously explored. During the first orbit of PSP, the spacecraft flew through a streamer blowout coronal mass ejection (SBO-CME) on 2018 November 11 at 23:50 UT as it exited the science encounter. The SBO-CME on November 11 was directed away from the Earth and was not visible by L1 or Earth-based telescopes due to this geometric configuration. However, PSP and the STEREO -A spacecraft were able to make observations of this slow (v ≈ 380 km s-1) SBO-CME. Using the PSP data, STEREO-A images, and Wang-Sheeley-Arge model, the source region of the CME is fo...
We provide analysis of a coronal mass ejection (CME) that passed over Parker Solar Probe (PSP) on Ja...
During the thirteenth encounter of the Parker Solar Probe (PSP) mission, the spacecraft traveled thr...
International audienceThe physical mechanisms that produce the slow solar wind are still highly deba...
In the first orbit of the Parker Solar Probe (PSP), in situ thermal plasma and magnetic field measur...
Context. On 26–27 January 2020, the Wide-field Imager for Solar Probe on Parker Solar Probe (PSP) ob...
The distribution of spacecraft in the inner heliosphere during 2019 March enabled comprehensive obse...
International audienceIn Parker Solar Probe's (PSP) first orbit, in situ thermal plasma measurements...
In this paper, we present an analysis of the internal structure of a coronal mass ejection (CME) det...
We present an analysis of the internal structure of a coronal mass ejection (CME) detected by in sit...
In Parker Solar Probe's (PSP) first orbit, in situ thermal plasma measurements were made between 35 ...
We present the first Parker Solar Probe mission (PSP)-observed coronal mass ejection (CME) that hits...
International audienceDuring the second solar encounter phase of Parker Solar Probe (PSP), two small...
We present an analysis of Parker Solar Probe (PSP) IS circle dot IS observations of similar to 30-30...
International audienceIn the early hours of June 13, 2020, just after the end of its 5 th solar enco...
We provide analysis of a coronal mass ejection (CME) that passed over Parker Solar Probe (PSP) on Ja...
During the thirteenth encounter of the Parker Solar Probe (PSP) mission, the spacecraft traveled thr...
International audienceThe physical mechanisms that produce the slow solar wind are still highly deba...
In the first orbit of the Parker Solar Probe (PSP), in situ thermal plasma and magnetic field measur...
Context. On 26–27 January 2020, the Wide-field Imager for Solar Probe on Parker Solar Probe (PSP) ob...
The distribution of spacecraft in the inner heliosphere during 2019 March enabled comprehensive obse...
International audienceIn Parker Solar Probe's (PSP) first orbit, in situ thermal plasma measurements...
In this paper, we present an analysis of the internal structure of a coronal mass ejection (CME) det...
We present an analysis of the internal structure of a coronal mass ejection (CME) detected by in sit...
In Parker Solar Probe's (PSP) first orbit, in situ thermal plasma measurements were made between 35 ...
We present the first Parker Solar Probe mission (PSP)-observed coronal mass ejection (CME) that hits...
International audienceDuring the second solar encounter phase of Parker Solar Probe (PSP), two small...
We present an analysis of Parker Solar Probe (PSP) IS circle dot IS observations of similar to 30-30...
International audienceIn the early hours of June 13, 2020, just after the end of its 5 th solar enco...
We provide analysis of a coronal mass ejection (CME) that passed over Parker Solar Probe (PSP) on Ja...
During the thirteenth encounter of the Parker Solar Probe (PSP) mission, the spacecraft traveled thr...
International audienceThe physical mechanisms that produce the slow solar wind are still highly deba...