Euclid: The potential of slitless infrared spectroscopy: A z=5.4 quasar and new ultracool dwarfs
arXiv:2506.13945 · doi:10.1093/mnras/staf1274
Abstract
We demonstrate the potential of Euclid's slitless spectroscopy to discover high-redshift (z>5) quasars and their main photometric contaminant, ultracool dwarfs. Sensitive infrared spectroscopy from space is able to efficiently identify both populations, as demonstrated by Euclid Near-Infrared Spectrometer and Photometer Red Grism (NISP RGE) spectra of the newly discovered z=5.404 quasar EUCL J181530.01+652054.0, as well as several ultracool dwarfs in the Euclid Deep Field North and the Euclid Early Release Observation field Abell 2764. The ultracool dwarfs were identified by cross-correlating their spectra with templates. The quasar was identified by its strong and broad CIII] and MgII emission lines in the NISP RGE 1206-1892 nm spectrum, and confirmed through optical spectroscopy from the Large Binocular Telescope. The NISP Blue Grism (NISP BGE) 926-1366 nm spectrum confirms CIV and CIII] emission. NISP RGE can find bright quasars at z~5.5 and z>7, redshift ranges that are challenging for photometric selection due to contamination from ultracool dwarfs. EUCL J181530.01+652054.0 is a high-excitation, broad absorption line quasar detected at 144 MHz by the LOw-Frequency Array (L144=4e25 W/Hz). The quasar has a bolometric luminosity of 3e12 Lsun and is powered by a 3.4e9 Msun black hole. The discovery of this bright quasar is noteworthy as fewer than one such object was expected in the ~20 deg2 surveyed. This finding highlights the potential and effectiveness of NISP spectroscopy in identifying rare, luminous high-redshift quasars, previewing the census of these sources that Euclid's slitless spectroscopy will deliver over about 14,000 deg2 of the sky.
Updated to match published version. Euclid NISP RGE quasar spectrum in Fig. 5 and NISP BGE spectrum in Appendix Fig. C1
References in corpus (35)
- A luminous quasar at a redshift of z = 7.085
- An ultra-luminous quasar with a twelve-billion-solar-mass black hole at redshift 6.30
- Euclid. I. Overview of the Euclid mission
- A Luminous Quasar at Redshift 7.642
- The Pan-STARRS1 distant z>5.6 quasar survey: more than 100 quasars within the first Gyr of the universe
- Pōniuā'ena: A Luminous Quasar Hosting a 1.5 Billion Solar Mass Black Hole
- The Final SDSS High-Redshift Quasar Sample of 52 Quasars at z>5.7
- The Radio-Loud Fraction of Quasars is a Strong Function of Redshift and Optical Luminosity
- Subtle Signatures of Multiplicity in Late-type Dwarf Spectra: The Unresolved M8.5 + T5 Binary 2MASS J03202839-0446358
- Discovery of 11 New T Dwarfs in the Two Micron All-Sky Survey, Including a Possible L/T Transition Binary
- A Spitzer census of the IC 348 nebula
- Discovery of Two Nearby, Peculiar L Dwarfs from the 2MASS Proper Motion Survey: Young or Metal-Rich?
- Euclid. III. The NISP Instrument
- Euclid. II. The VIS Instrument
- Euclid preparation. XVIII. The NISP photometric system
- Widespread, strong outflows in XQR-30 quasars at the Reionisation epoch
- Modelling type 1 quasar colours in the era of Rubin and Euclid
- An Infrared High Proper Motion Survey Using 2MASS and SDSS: Discovery of M, L and T Dwarfs
- Quasar Luminosity Function at z = 7
- The Gaia Ultra-Cool Dwarf Sample -- II: Structure at the end of the main sequence
- The Pan-STARRS1 z>5.6 quasar survey II: Discovery of 55 Quasars at 5.6<z<6.5
- XQR-30: Black Hole Masses and Accretion Rates of 42 z>6 Quasars
- Discovery of a 66 mas Ultracool Binary with Laser Guide Star Adaptive Optics
- Euclid: Early Release Observations -- Programme overview and pipeline for compact- and diffuse-emission photometry
- The Pan-STARRS1 Quasar Survey: III. The Quasar Luminosity Function
- DESI z >~ 5 Quasar Survey. I. A First Sample of 400 New Quasars at z ~ 4.7-6.6
- Data Release 1 of the Dark Energy Spectroscopic Instrument
- Random Forests as a viable method to select and discover high redshift quasars
- Survey of Extremely High-velocity Outflows in Sloan Digital Sky Survey Quasars
- Connecting radio emission to AGN wind properties with Broad Absorption Line Quasars
- Ubiquitous radio emission in quasars: predominant AGN origin and a connection to jets, dust and winds
- Ultracool dwarfs candidates based on six years of the Dark Energy Survey data
- Discovery and characterization of 25 new quasars at 4.6 < z < 6.9 from wide-field multi-band surveys
- Euclid preparation. Observational expectations for redshift z<7 active galactic nuclei in the Euclid Wide and Deep surveys
- Plausible association of distant late M dwarfs with low-frequency radio emission
Cited by in corpus (4)
- Shedding the envelope: JWST reveals a kiloparsec-scale [OIII]-weak Balmer shell around a z=7.64 quasar
- Euclid: Discovery of 31 new quasars at
- Euclid: Discovery of bright Lyman-break galaxies in UltraVISTA and Euclid COSMOS
- First constraints on the local ionization topology in front of two quasars at z ~ 7.5