GNS 5901 , the SIMBAD biblio

GNS 5901 , the SIMBAD biblio (16 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.20CEST04:40:54


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Title First 3 Authors
2009ApJ...706..885W 15       D               1 99 15 Optical spectroscopy of distant red galaxies. WUYTS S., VAN DOKKUM P.G., FRANX M., et al.
2010ApJ...719..425F 15       D               1 53 47 Ultra-deep mid-infrared spectroscopy of luminous infrared galaxies at z ∼ 1 and z ∼ 2. FADDA D., YAN L., LAGACHE G., et al.
2011MNRAS.411..505C viz 15       D               1 126 99 A joint analysis of BLAST 250–500 µm and LABOCA 870 µm observations in the Extended Chandra Deep Field-South. CHAPIN E.L., CHAPMAN S.C., COPPIN K.E., et al.
2011MNRAS.413...80C viz 15       D               1 922 85 The Hubble Space Telescope GOODS NICMOS Survey: overview and the evolution of massive galaxies at 1.5< z< 3. CONSELICE C.J., BLUCK A.F.L., BUITRAGO F., et al.
2011ApJ...743..146C viz 15       D               1 4132 61 Active and passive galaxies at z ∼ 2: rest-frame optical morphologies with WFC3. CAMERON E., CAROLLO C.M., OESCH P.A., et al.
2012MNRAS.423.1909P 364       D     X   F     9 37 22 The AGN content in luminous infrared galaxies at z ∼ 2 from a global SED analysis including Herschel data. POZZI F., VIGNALI C., GRUPPIONI C., et al.
2012ApJ...759..139K viz 15       D               1 158 148 GOODS-Herschel: impact of active galactic nuclei and star formation activity on infrared spectral energy distributions at high redshift. KIRKPATRICK A., POPE A., ALEXANDER D.M., et al.
2013ApJ...762..108L 16       D               1 32 23 The complex physics of dusty star-forming galaxies at high redshifts as revealed by Herschel and Spitzer. LO FARO B., FRANCESCHINI A., VACCARI M., et al.
2015MNRAS.447.3442L 770       D S   X C F     17 40 3 Combining physical galaxy models with radio observations to constrain the SFRs of high-z dusty star-forming galaxies. LO FARO B., SILVA L., FRANCESCHINI A., et al.
2017ApJ...843...71K 16       D               1 55 8 A controlled study of cold dust content in galaxies from z = 0-2. KIRKPATRICK A., POPE A., SAJINA A., et al.
2017MNRAS.472.1372L 84               F     1 24 74 Characterizing the UV-to-NIR shape of the dust attenuation curve of IR luminous galaxies up to z ∼ 2. LO FARO B., BUAT V., ROEHLLY Y., et al.
2020ApJ...892..119M 358       D     X C       8 10 ~ Measuring the heating and cooling of the interstellar medium at high redshift: PAH and [C II] observations of the same star-forming galaxies at z ∼ 2. McKINNEY J., POPE A., ARMUS L., et al.
2021MNRAS.504..928P 17       D               1 19 10 Unveiling the nature of 11 dusty star-forming galaxies at the peak of cosmic star formation history. PANTONI L., LAPI A., MASSARDI M., et al.
2021MNRAS.507.3998P 801       D S   X   F     17 18 9 An ALMA view of 11 dusty star-forming galaxies at the peak of cosmic star formation history. PANTONI L., MASSARDI M., LAPI A., et al.
2023MNRAS.521..818S 187             C F     3 16 ~ UV-FIR SED modelling of AGNs in IR-luminous galaxies up to z ∼ 2.5: understanding the effects of torus models. SOKOL A.D., YUN M., POPE A., et al.
2023ApJ...955..136M 112       D     X         3 18 ~ The IR Compactness of Dusty Galaxies Sets Star Formation and Dust Properties at z ∼ 0-2. McKINNEY J., POPE A., KIRKPATRICK A., et al.

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