The Carnegie Supernova Project II Observations of the luminous red nova AT 2014ej Stritzinger, M. D. Galbany González, Lluis Supernovae: individual: AT2014ej Supernovae: general We present optical and near-infrared broadband photometry and optical spectra of AT 2014ej from the Carnegie Supernova ProjectII. These observations are complemented with data from the CHilean Automatic Supernova sEarch, the Public ESO Spectroscopic Survey of Transient Objects, and from the Backyard Observatory Supernova Search. Observational signatures of AT 2014ej reveal that it is similar to other members of the gap-transient subclass known as luminous red novae (LRNe), including the ubiquitous doublehump light curve and spectral properties similar to that of LRN SN 2017jfs. A medium-dispersion visual-wavelength spectrum of AT 2014ej taken with the Magellan Clay telescope exhibits a P Cygni Hα feature characterized by a blue velocity at zero intensity of ≈110 km s−1 and a P Cygni minimum velocity of ≈70 km s−1 . We attribute this to emission from a circumstellar wind. Inspection of pre-outbust Hubble Space Telescope images yields no conclusive progenitor detection. In comparison with a sample of LRNe from the literature, AT 2014ej lies at the brighter end of the luminosity distribution. Comparison of the ultra-violet, optical, infrared light curves of well-observed LRNe to common-envelope evolution models from the literature indicates that the models underpredict the luminosity of the comparison sample at all phases and also produce inconsistent timescales of the secondary peak. Future efforts to model LRNe should expand upon the current parameter space we explore here and therefore may consider more massive systems and a wider range of dynamical timescales. 2020-10-05T12:51:23Z 2020-10-05T12:51:23Z 2020-07 journal article Stritzinger, M. D., Taddia, F., Fraser, M., Tauris, T. M., Contreras, C., Drybye, S., ... & Phillips, M. M. (2020). The Carnegie Supernova Project II-Observations of the luminous red nova AT 2014ej. Astronomy & Astrophysics, 639, A104. [https://doi.org/10.1051/0004-6361/202038019] http://hdl.handle.net/10481/63669 10.1051/0004-6361/202038019 eng http://creativecommons.org/licenses/by/3.0/es/ open access Atribución 3.0 España EDP Sciences