Asteroidscomets

A Single Line Emitter Identified in an Unbiased Search with JWST/NIRSpec: Multiobject Coronagraphy for Slitless Spectroscopy

October 2026 • 2026ApJ..1009..117H

Authors • Huberty, Mason S. • Scarlata, Claudia • Hayes, Matthew J. • Henry, Alaina • Berg, Danielle A. • Cammelli, Vieri • Ellis, Richard • Jaskot, Anne E. • Lin, Yu-Heng • Mehta, Vihang • Mingozzi, Matilde • Monaco, Pierluigi • Saldana-Lopez, Alberto • Saxena, Aayush • Tan, Jonathan C. • Young, Alice

Abstract • We report the detection of a previously unknown object with a single emission line within the Hubble Ultra Deep Field, using a new JWST NIRSpec technique called Multiobject Coronagraphy for Slitless Spectroscopy (MOCSS) with the G140M/F100LP observing mode. The MOCSS technique involves opening almost all the shutters on the NIRSpec microshutter array, while simultaneously closing the shutters that lie on top of known low-redshift objects, facilitating a wide-field slitless spectroscopic search without contamination from bright objects. This observational technique has enabled the detection of a strong emission line in four different dither positions and in two position angles, and thus cannot be artificial. This line is detected at 1.60 μm with a line flux of [2.5 ± 0.3] × 10-18 erg s-1cm-2 and an FWHM of 13.2 ± 2.0 Å, and does not correspond to any known source with some of the deepest Hubble Space Telescope and JWST imaging in existence. Based upon the absence of imaging detection, we place a lower limit on the observed frame equivalent width (EW) of 7620 Å on this object, which strongly limits the number of possible lines that this line can be. Given the wavelength, an EW limit that is near the ceiling of expectation, and the lack of other lines in the bandpass, this line cannot be easily explained by [O II] at z = 3.29, [O III] at z = 2.20, Hα at z = 1.44, and Lyα at z = 12.16. We discuss possible active galactic nucleus and transient phenomena that could explain the finding.

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IPAC Authors
(alphabetical)

Yu-Heng Lin

Postdoctoral Scholar


Vihang Mehta

Staff Scientist