K. Medler, W. B. Hoogendam, C. Ashall, Bin Yang, J. J. Wray, B. J. Shappee, K. J. Meech, M. A. Tucker, Katie Auchettl, D. Desai, Jason T. Hinkle, Andrew Hoffman, M. E. Huber, D. O. Jones, Ruining Zhao
Abstract Interstellar objects provide a unique view into the formation of other star systems. Here we present spectroscopic observations of the recently discovered interstellar object 3I/ATLAS between a heliocentric distance of 3.7–1.8 au on either side of its travels through perihelion. We obtained several observations with the Keck-I/LRIS, Keck-II/NIRES, Gemini/GMOS, and UH88/SNIFS spectrographs, covering a wavelength range of 0.3–2.5 μ m. We report the continued emission of both Ni and CN, along with postperihelion detections of Fe and a weak detection of C 3 . We determine the spectral slope across optical and near-infrared (NIR) wavelengths and find a positive spectral slope in the optical, with values ranging from ∼21% to 27% in the blue regions (0.4–0.55 μ m) to ∼6%–10% in the red (0.65–0.9 μ m) regions. In contrast, the NIR showed a negative spectral slope of ∼−0.9% between 0.9 and 1.5 μ m and ∼−2.3% between 1.9 and 2.5 μ m. 3I/ATLAS shows a clear turnover in its spectral shape at ∼1.1 μ m, consistent with scattered sunlight from the dusty coma. Finally, in the NIR spectra presented in this work, we do not detect any of the water ice features that were identified in an earlier NIR observation of 3I/ATLAS. Our observations of 3I/ATLAS in the NIR show a similar shape to the NIR spectrum of 2I/Borisov as it approached perihelion.