Astronomy & Universe

Euclid Telescope Uncovers 31 New Ancient Quasars, Including the Oldest Known

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This article was produced with AI assistance and editorially curated from public sources.

Findings from the Euclid Wide Survey

After only a year and a half of operation, the European space telescope Euclid has discovered 31 quasars dating back to when the universe was less than 800 million years old. These objects were detected within the Euclid Wide Survey, which was not primarily designed to search for such early‑epoch sources.

A valuable sample for early‑universe studies

The newly identified quasars constitute the largest collection of actively accreting supermassive black holes from the universe’s infancy. Their presence offers researchers a unique opportunity to probe galaxy formation and black‑hole growth during the first few hundred million years after the Big Bang.

Methodology and significance

Euclid’s combination of high‑resolution optical and near‑infrared instruments enables the detection of extremely faint, distant signals. Although the survey’s primary goals lie elsewhere, the broad sky coverage and sensitivity have proven highly effective for uncovering ancient quasars.

Future prospects

The current sample will be expanded as Euclid continues its observations, providing deeper insight into the earliest galaxies and refining theoretical models of supermassive black‑hole emergence.

Frequently asked questions

Wie alt ist das älteste gefundene Quasar-Objekt?

Es stammt aus einer Zeit, als das Universum weniger als 800 Millionen Jahre alt war.

Warum ist das Euclid Wide Survey für die Quasar‑Suche geeignet?

Die Kombination aus breiter Himmelsabdeckung und hochsensiblen Infrarot‑ und Optikinstrumenten ermöglicht das Auffinden extrem schwacher, entfernter Signale.

Welche wissenschaftlichen Fragen können mit den neuen Quasaren untersucht werden?

Sie helfen, die Entstehung von Galaxien und das Wachstum supermassiver Schwarzer Löcher in den ersten Milliarden Jahren nach dem Urknall zu verstehen.