Astronomy & Universe

Euclid’s Galactic Mosaic Reveals Millions of Stars and Hidden Planets

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Euclid’s Galactic Mosaic Reveals Millions of Stars and Hidden Planets
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This article was produced with AI assistance and editorially curated from public sources.

A unprecedented view of the Milky Way

Three years after its launch, ESA’s Euclid telescope has produced an unmatched image of the Galaxy’s centre. In just 26 hours of observation, thousands of individual exposures were stitched together, forming a mosaic that contains tens of millions of stars.

More than a star field

The picture serves scientific purposes beyond its visual impact. It acts as a map of stellar evolution, spanning from dark molecular clouds where new stars form to the ancient, densely packed populations of the galactic bulge.

Hidden worlds revealed by microlensing

Within this dense field of light, countless planets remain invisible to direct detection. Astronomers employ gravitational microlensing, measuring brief brightening events when a foreground star – often accompanied by a planet – passes in front of a background star. The resulting light curves allow the identification of planets and even estimates of their masses, solely via gravitational effects.

Euclid’s expanding role

Originally built to probe dark matter and dark energy, Euclid now opens a new window on our own Galaxy. Its combination of wide‑field imaging and precise photometry makes it a powerful tool for both cosmology and the study of exoplanet demographics within the Milky Way.

Future prospects

Preliminary analyses suggest that thousands of previously unknown planets may reside in the surveyed region. Ongoing data processing will refine these statistics and improve our understanding of planetary distribution across the inner Galaxy.

Frequently asked questions

Wie erkennt man Planeten, die nicht direkt sichtbar sind?

Durch die Messung von Lichtverstärkungen, die entstehen, wenn ein Stern mit einem Begleitplaneten vor einem Hintergrundstern vorbeizieht – das Prinzip der Gravitationsmikrolinse.

Welches ursprüngliche Ziel hatte das Euclid‑Projekt?

Euclid wurde entwickelt, um die Verteilung von dunkler Materie und dunkler Energie im Universum zu untersuchen.

Wie viele Sterne umfasst das neue Bild des galaktischen Zentrums?

Das Mosaik enthält mehrere zehn Millionen Sterne, aufgenommen in einem Zeitraum von 26 Stunden.