#AdityaL1

#MPS:
"
Sonnenspäher Aditya-L1: Explosives Debüt im All

Wenige Monate nach Inbetriebnahme hat die Raumsonde einen Strahlungsausbruch auf der Sonne beobachtet – und in eine kaum erforschte Schicht unseres Sterns geschaut.
"
mps.mpg.de/8324776/news_public

28.2.2025

#AdityaL1 #Flare #Indien #ISRO #Raumfahrt #Raumsonde #SoLEXS #Sonne #Sonnenatmosphäre #Sonnensonde #SpaceFlight #SUIT #UV

OhsinOhsin
2024-05-14

Both Aditya-L1 and Chandrayaan-2 have made observations on recent solar eruptive events and their signatures have been analysed.

isro.gov.in/ISROCapturestheSig

On spacecraft impact:

No significant degradation in the NaVIC service, no major upsets observed in any of the 30 GEO spacecrafts. No single event upsets were seen.

Momentum Wheel speed deviations seen on some sats.

Spacecrafts with one-sided panel required frequent momentum dumping.

newspatronnewspatron
2024-03-07

Join the Aditya L 1 mission as we journey to unlock the mysteries of the Sun 🌞 Launching on September 2, 2023, it's India's giant leap in solar research. 🚀

newspatron.com/2023/09/01/adit

WOMUMPwomump
2024-02-25

Time-lapse from just now of the GHY-6 ('Merlin') antenna at slewing to track the spaceborne solar observatory, 1.5 million kilometres sunward.
Taken from live status page at status.ghy6.goonhilly.org/

OhsinOhsin
2024-01-25

"The 6-meter long magnetometer boom on the Aditya-L1 satellite has been successfully deployed. It is deployed in the Halo orbit at the Lagrange point L-1, on January 11, 2024. The boom had been in stowed condition for 132 days since the Aditya-L1 launch."

isro.gov.in/Aditya_L1_MAG_Boom

Image source: Patent for deployable boom (redd.it/167nlw8)

Design drawings for deployable boom assembly for URSC/ISRO patent.
2024-01-07

Atzo, Indiako #AdityaL1 Espazio-zunda, Eguzki-Lurra L1 puntura iritsi zen.

2026ean, Australiako Espazioa Agentziaren #GdayMoon misioa Ilargira jaurtiko da. Honek, #RooVer izeneko astromibila eramango du.

#Marte-ko hauts ekaitza #Tianwen1 zundak atzo ikusita.

#Espazioa #Ilargia

Slash Insiderslashinsider
2024-01-07

slashinsider.com/india-aditya-

India's solar mission successfully entered the sun's orbit after a four-month journey. The mission aims to study the 's outer layers, marking a significant achievement for 's space program.

2024-01-07

🛰️☀️ La sonde indienne d’étude du Soleil #AdityaL1 est arrivée ce 6 janvier au point de Lagrange L1 à 1,5 million de km de la Terre après 126 jours de vol

2024-01-07

Solar observatory spacecraft, Aditya-L1 inserted in Halo-Orbit 
The solar observatory spacecraft, Aditya-L1 was successfully inserted in Halo-Orbit about 1.5 million km away from earth on 6th January 2024............
#AdityaL1 #Haloorbit #IndianSpaceResearchOrganisation #ISRO #Lagrangianpoint #Solarobservatory #solarwind #Spaceweather
SCIEU Team

scientificeuropean.co.uk/scien

2024-01-06
Glyn Moodyglynmoody
2024-01-06

’s solar mission reaches Sun’s orbit - theguardian.com/world/2024/jan "reportedly cost $48m (£38m)" so why hasn't the UK done this?

Shadowseekershadowseeker149
2024-01-06

Aditya-L1: India's Sun mission reaches final destination

Aditya-L1 has been travelling towards the Sun for more than four months since launch on 2 September.

shadowseeker.online/aditya-l1-

OhsinOhsin
2024-01-06

"Halo-Orbit Insertion (HOI) of its solar observatory spacecraft, Aditya-L1 was accomplished at 16.00 Hrs (approx) on January 6, 2024 (IST). The final phase of the maneuver involved firing of control engines for a short duration."

isro.gov.in/halo-orbit-inserti

Kuuke's Sterrenbeeldenkuuke@mastodon.nl
2023-12-09

Indiase Aditya-L1 levert eerste beelden van de Zon

De ruimtesonde heeft de aardse invloedssfeer verlaten en is ongeveer een maand verwijderd van het bereiken van zijn kosmische bestemming in Lagrangepunt L1.

kuuke.nl/indiase-aditya-l1-lev

#AdityaL1 #india #LagrangepuntL1 #SUIT #zon #zonnetelescoop #zonnevlammen #zonnevlekken

2023-12-08

🛰️☀️ La sonde indienne #AdityaL1 pour l'étude du #Soleil a envoyé ses premières images de notre étoile dans les longueurs d'onde 200-400 nm (proches de l'ultraviolet). Les différents filtres permettent de visualiser la photosphère, les taches solaires, les régions tranquilles du Soleil

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