This is an old revision of the document!
From Solar Jets to Inner-Heliospheric Switchbacks (JET2SB) is a 42 month collaborative science project that started in October 2025. JET2SB is supported by the French Agence Nationale pour la Recherche (ANR) under the grant agreement n°ANR-25-CE31-7416.
In the context of the Parker Solar Probe (NASA) and Solar Orbiter (ESA) space missions, JET2SB aims at better understanding the connection between the Sun and its heliosphere and in particular to which extend small to intermediate scale solar activity can induce the ubiquitous magnetic deflections observed in the inner heliosphere.
JET2SB brings together three French solar physics teams with fully complementary expertise, using both space and ground-based observations of the solar atmosphere, in-situ measurements from heliospheric spacecrafts in synergy with comprehensive numerical modelling of the generation and propagation of solar jets from the solar atmosphere to the inner heliosphere. JET2SB is the first project to combine the expertise of these three French laboratories:
• French-Spanish Laboratory for Astrophysics in Canaries (FSLAC): observations of the solar atmosphere, most notably with the THEMIS solar telescope instrument.
• Laboratoire de Physique des Plasmas (LPP): 3D MHD numerical modelling of active events in the solar atmosphere and inner-heliosphere.
• Laboratoire de Physique et Chimie de l’Environnement et de l’Espace (LPC2E): in-situ measurements in the inner heliosphere with PSP and SolO.
JET2SB project organisationThe JET2SB project is organized in three scientific work packages (WPs), as illustrated in Figure XX, with a summary diagram illustrating the links between the different tasks. Work Package 1 (WP1) - Observations of jet-like events in the solar atmosphereWP1, FSLAC lead, aims at providing unprecedented observations, from both space and ground based instruments, of the jet sources that can eventually lead to SBs. That will permit both directly a better understanding of the properties and physics of these events, as well as constrain the numerical models to be used in WP2. Work Package 2 (WP2) - 3D MHD numerical modelling of the propagation of solar jetsThis second WP, LPP lead, is the backbone of the JET2SB project, as its objective is to permit to link solar atmosphere observations to inner-heliosphere measurements thanks to 3D MHD simulations of the propagation of coronal jets. The simulations will build-up on the observational constraint coming from WP1 and provide to WP3 synthetic in-situ measurements. The simulations will be mainly using the 3D MHD numerical solver ARMS, which has extensively exploited in the last decade by JET2SB team members. Two modelling efforts shall be carried with different numerical domains. The restricted domain simulations simulations, less numerically expensive, will permit to explore the parameters space. They also constitute test-beds for the whole-atmosphere simulations. Because of the much larger domain extend, whole-atmosphere simulations are numerically expensive, in particular as they require long pre-relaxion runs. Work Package 3 (WP3) - In-situ measurements of switchbacks/solar jets signaturesComparison of the in-situ magnetic field and fluid measurement with the in-situ-like analyses of the simulation’s outputs will be carried out in WP3, LPC2E lead. Doing so, it will be possible to discriminate the WP2 simulations (and set-ups) that induce realistic SB signatures from those which don’t. The main objectives of WP3 is thus to provide forward constraints on the jet models, in order to iteratively reach a propagation model of solar jets able to account for diverse in-situ SB properties. |
Results and data accessIn construction THEMIS observationsNumerical simulationsIn-situ measurements |