eROSITA
EROSITA is an X-ray instrument built by the Max Planck Institute for Extraterrestrial Physics (MPE) in Germany. It is part of the Russian–German Spektr-RG space observatory, which also carries the Russian telescope ART-XC. It was launched by Roscosmos on 13 July 2019 from Baikonur, and deployed in a 6-month halo orbit around the second Lagrange point (L2). It began collecting data in October 2019.
eROSITA

DLR_de · DLR, CC-BY 3.0 · eROSITA Animation · CC BY 3.0 de
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EROSITA is an X-ray instrument built by the Max Planck Institute for Extraterrestrial Physics (MPE) in Germany. It is part of the Russian–German Spektr-RG space observatory, which also carries the Russian telescope ART-XC. It was launched by Roscosmos on 13 July 2019 from Baikonur, and deployed in a 6-month halo orbit around the second Lagrange point (L2). It began collecting data in October 2019.
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In this article
Overview
Overview
Due to the breakdown of institutional cooperation between Germany and Russia after the invasion of Ukraine, the instrument stopped collecting data on February 26, 2022.

Englisch Version below Deutsch Eine Proton-Rakete bringt die Raumsonde Spektrum-Röntgen-Gamma (SRG) vom Kosmodrom Baikonur mit dem deutschen Röntgenteleskop eROSITA und seinem russischen Partnerinstrument ART-XC zu ihrem 1,5 Millionen Kilometer entfernten Ziel - dem Lagrange-Punkt 2. Von diesem Ort des Kräftegleichgewichts aus wird eROSITA (extended Roentgen Survey with an Imaging Telescope Array)
DLR_de · DLR, CC-BY 3.0 · eROSITA Animation

Englisch Version below Deutsch Eine Proton-Rakete bringt die Raumsonde Spektrum-Röntgen-Gamma (SRG) vom Kosmodrom Baikonur mit dem deutschen Röntgenteleskop eROSITA und seinem russischen Partnerinstrument ART-XC zu ihrem 1,5 Millionen Kilometer entfernten Ziel - dem Lagrange-Punkt 2. Von diesem Ort des Kräftegleichgewichts aus wird eROSITA (extended Roentgen Survey with an Imaging Telescope Array)
DLR_de · DLR, CC-BY 3.0 · eROSITA Animation
Key facts
Key facts
• Name — eROSITA • Operator — Germany German Aerospace Center Russia Russian Space Research Institute • Manufacturer — Max Planck Institute for Extraterrestrial Physics • Type — Wolter • Function — X-ray all-sky survey • Mission Duration — > 7 years • Webpage — http: www.mpe.mpg.de/eROSITA • Mass — 810 kg • Dimensions — 1.3 m × 2.6 m • Number — 7 mirror modules • Power Consumption — 550 W • Resolution — 15 arcsec (at 1.5 keV) • Spectral Band — X-rays, 0.2 - 10 keV (6.2-0.12 nm) • Spacecraft — Spektr-RG • Sc Operator — Russia, Russian Space Research Institute Germany, German Aerospace Center • Launch — 13 July 2019 • Rocket — Proton-M • Launch Site — Baikonur 81/24 • Orbit — Second Lagrange point (L2)
Overview
Overview
• Illustration — eROSITA overview animation from the German Aerospace Center eROSITA was originally designed by the ESA for the International Space Station, and it was concluded in 2005 that its accommodation on a dedicated free flyer would provide significantly improved scientific output. The eROSITA telescopes are based on the design of the ABRIXAS observatory launched in April 1999, whose battery was accidentally overcharged and destroyed three days after the mission started. The plan was eROSITA imaging the entire sky in the X-ray band for seven years. The eROSITA all-sky survey (eRASS) was the first image of the entire sky in the 2-10 keV band. In the 0.3-2 keV band, it is expected to be 25 times more sensitive than the pioneering ROSAT mission of the 1990s, and will effectively supersede it. eROSITA is expected to detect 100,000 galaxy clusters, 3 million active galactic nuclei and 700,000 stars in the Milky Way. The primary science goal is to measure dark energy through the structure and history of the Universe traced by galaxy clusters. eROSITA was launched on 13 July 2019 by Roscosmos from Baikonur. It achieved first light on 17 October 2019 and completed its first all-sky survey on 11 June 2020. In the summer of 2021 the first eROSITA X-ray data release to the public was announced. The operations of eROSITA were suspended on 26 February 2022 after the Russian attack into Ukraine. The science operations of the instrument were paused, but the analysis of the data already received in Germany continued. At the time, eROSITA had completed four of its planned eight full-sky surveys. In June 2022, Roscosmos announced its intent to restore the operation of eROSITA unilaterally, which was criticized by experts for its potential to damage the telescope.
Construction
Construction
The telescope consists of seven identical Wolter-type mirror modules with 54 nested gold-coated mirrors. The mirrors are arranged to collect the high-energy X-ray photons and guide them to the eROSITA X-ray sensitive cameras. The cameras were also custom-built at MPE, with X-ray CCDs manufactured from high-purity silicon. For optimum performance, the cameras are cooled to -90 C. • Illustration — The seven mirror modules from the front • Illustration — X-ray detectors behind each mirror
Instruments
Instruments
Instruments on the Spektr-RG observatory • eROSITA — ART-XC • Organisation — Max Planck Institute for Extraterrestrial Physics — IKI / VNIIEF • Telescope type — Wolter — Wolter • Wavelength — X-ray — X-ray • Mass — 810 kg — 350 kg • Sensitivity range — 0.3 - 10 keV — 6 - 30 keV • View angle — 1 degree (diameter) — 30 minutes • Angular resolution — 15 seconds — 45 seconds • Sensor area — 2,400 cm 2 / 1 keV — 450 cm 2 / 8 keV
Collaboration
Collaboration
eROSITA was developed at the Max Planck Institute for Extraterrestrial Physics in collaboration with institutes in Bamberg, Hamburg, Potsdam und Tübingen. The instrument principal investigator is Peter Predehl. The project scientist is Andrea Merloni. The German eROSITA consortium has members from institutes all across Germany, but also from international institutes, and has established collaborations with ground-based telescopes for follow-up observations of the millions of sources that will be detected by eROSITA. • Illustration — German eROSITA consortium meeting in Potsdam, March 4–7, 2019
Science results
Science results
First science verification results were released on October 22, 2019, including high-resolution spectra of Supernova 1987a, images of the Large Magellanic Cloud and galaxy clusters, as well as light curves of a highly variable Active Galactic Nuclei. • Illustration — Interacting galaxy clusters A3391 & A3395 with eROSITA The first all-sky survey was completed on June 11, 2020, cataloging 1.1 million sources, including mostly Active Galactic Nuclei (77%), stars with strong, magnetically active hot coronae (20%) and clusters of galaxies (2%), but also bright X-ray binaries, supernova remnants, extended star-forming regions as well as transients such as Gamma-Ray Bursts. The map includes extended features of the Milky Way, including mushroom-like bubbles and absorbing galactic gas in the disk (blue). • Illustration — eROSITA all-sky survey image
Places
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Germany.
Country
eROSITA is associated with Germany.
Country
Primary material
Documents and archives
reference work
- Wikidata, structured authority record Q1275802: eROSITA
Reputable secondary · Wikidata
- “EROSITA”, English Wikipedia, consulted as further reading
Reputable secondary · Wikipedia
authority file
- Gemeinsame Normdatei 1164103156, eROSITA.
General reference · Deutsche Nationalbibliothek
Literature
Literature
SRG/eROSITA prospects for the detection of GRB afterglows, Monthly Notices of the Royal Astronomical Society, 2012
IDENTIFICATION OF RED DWARFS WITH X-RAY SOURCES IN THE "FIRST LIGHT" FIELD OF THE eROSITA TELESCOPE, Proceedings of the 25th All-Russia Conference on Solar and Solar-Terrestrial Physics, 2021
Possible Evidence for Extended X-Ray Emission Surrounding PSR B0656+14 with eROSITA, The Astrophysical Journal, 2026
Notes from the source article
Cited by Wikipedia
Notes from the source article
These works are cited by the source article, in its own numbering. They are recorded as its citations, not as sources VALÉORINE has verified.
- 1.eROSITA Technical Performance. Max Planck Institute for Extraterrestrial Physics. Accessed on 14 June 2019.
- 2.Новости. О пуске ракеты-носителя "Протон-М". www.roscosmos.ru.
- 3.Zak, Anatoly. Spektr-RG to expand horizons of X-ray astronomy. Russian Space Web. 16 April 2016.
- 4.Statement on the status of the eROSITA instrument aboard Spektr-RG (SRG). 2 March 2022.
- 5.Russian Space Research Institute. Spectrum-RG/eRosita/Lobster mission definition document. 2005-10-30.
- 6.Castelvecchi, Davide. Space telescope to chart first map of the Universe in high-energy X-rays. Nature. 570. 7760. 149–150. 11 June 2019. 10.1038/d41586-019-01831-1.
- 7.German X-ray telescope achieves 'first light' – Spaceflight Now.
- 8.Breathtaking new map of the X-ray Universe. BBC News. 19 June 2020.
- 9.An appetizer to the all-sky banquet. www.mpe.mpg.de.
- 10.Statement on the status of the eROSITA instrument aboard Spektr-RG (SRG). www.mpe.mpg.de.
- 11.Russia plans to restart German telescope without permission. Deutsche Welle. 4 June 2022.
- 12.Dvorsky, George. Russian Space Agency Plans to Space-Jack a German X-Ray Telescope. Gizmodo. 7 June 2022.
- 13.eROSITA Science Book: Mapping the Structure of the Energetic Universe. 2012-09-20.
- 14.Predehl, Peter. Revealing the Beauty of the Hidden Universe: eROSITA sees first light. Max Planck Institute for Extraterrestrial Physics. 11 June 2019.
- 15.Merloni, Andrea. Our deepest view of the X-ray sky. Max Planck Institute for Extraterrestrial Physics. 19 June 2020.
- 16.Merloni, Andrea. Presskit for the eROSITA First All-Sky Survey. Max Planck Institute for Extraterrestrial Physics. 19 June 2020.
- 17.Amos, Jonathan. Breathtaking new map of the X-ray Universe. BBC News. 19 June 2020.
References
Citations
References
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authority file
Gemeinsame Normdatei 1164103156, eROSITA.Deutsche Nationalbibliothek
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