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Constraints on the evolutionary mechanisms of massive galaxies since z ∼ 1 from their velocity dispersions

dc.contributor.authorPeralta de Arriba, L.
dc.contributor.authorBalcells, M.
dc.contributor.authorTrujillo, I.
dc.contributor.authorFalcón Barroso, J.
dc.contributor.authorTapia, T.
dc.contributor.authorCardiel López, Nicolás
dc.contributor.authorGallego Maestro, Jesús
dc.contributor.authorGuzmán, R.
dc.contributor.authorHempel, A.
dc.contributor.authorMartín Navarro, I.
dc.contributor.authorPérez González, Pablo Guillermo
dc.contributor.authorSánchez Blázquez, Patricia
dc.date.accessioned2023-06-18T06:49:10Z
dc.date.available2023-06-18T06:49:10Z
dc.date.issued2015-10-11
dc.description© 2015 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society. The authors are grateful to the referee for his/her insightful and constructive review. The authors also thank J. Martínez Manso, G. Barro, A. J. Cenarro, L. Domínguez Palmero, M. Fernández Lorenzo, C. López Sanjuan, M. Prieto, M. Cappellari, A. Cimatti, L. Ciotti, C. J. Conselice and the Traces of galaxy formation group (http://www.iac.es/project/traces) for their collaboration during the development of this paper. LPdA was partially supported by the FPI Program by Spanish Ministry of Science and Innovation. JF-B acknowledges the support from the FP7 Marie Curie Actions of the European Commission, via the Initial Training Network DAGAL under REA grant agreement number 289313. This work has been supported by the Programa Nacional de Astronomía y Astrofísica of the Spanish Ministry of Science and Innovation under the grants AYA2009-11137, AYA2012-30717, AYA2012-31277 and AYA2013-48226-C3-1-P. Based on observations made with the Gran Telescopio Canarias (GTC), installed at the Spanish Observatorio del Roque de los Muchachos of the Instituto de Astrofísica de Canarias (IAC), in the island of La Palma. This work has made use of the Rainbow Cosmological Surveys data base, which is operated by the Universidad Complutense de Madrid (UCM), partnered with the University of California Observatories at Santa Cruz (UCO/Lick, UCSC). Based on observations made with the NASA/ESA Hubble Space Telescope, and obtained from the Hubble Legacy Archive, which is a collaboration between the Space Telescope Science Institute (STScI/NASA), the Space Telescope European Coordinating Facility (ST-ECF/ESA) and the Canadian Astronomy Data Centre (CADC/NRC/CSA). This research made use of ASTROPY, a community-developed core PYTHON package for Astronomy (Astropy Collaboration 2013). This research made use of APLPY, an open-source plotting package for PYTHON hosted at http://aplpy.github.com.
dc.description.abstractSeveral authors have reported that the dynamical masses of massive compact galaxies (M_⋆ ≳ 10^11 M_⊙, r_e ∼ 1 kpc), computed as M_dyn=5.0 σ_e^2r_e/GMdyn=5.0 σe2re/G, are lower than their stellar masses M_⋆. In a previous study from our group, the discrepancy is interpreted as a breakdown of the assumption of homology that underlie the M_dyn determinations. Here, we present new spectroscopy of six redshift z ≈ 1.0 massive compact ellipticals from the Extended Groth Strip, obtained with the 10.4 m Gran Telescopio Canarias. We obtain velocity dispersions in the range 161–340 km s^−1. As found by previous studies of massive compact galaxies, our velocity dispersions are lower than the virial expectation, and all of our galaxies show M_dyn < M_⋆ (assuming a Salpeter initial mass function). Adding data from the literature, we build a sample covering a range of stellar masses and compactness in a narrow redshift range z ≈ 1.0. This allows us to exclude systematic effects on the data and evolutionary effects on the galaxy population, which could have affected previous studies. We confirm that mass discrepancy scales with galaxy compactness. We use the stellar mass plane (M_⋆, σ_e, r_e) populated by our sample to constrain a generic evolution mechanism. We find that the simulations of the growth of massive ellipticals due to mergers agree with our constraints and discard the assumption of homology.
dc.description.departmentDepto. de Física de la Tierra y Astrofísica
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.sponsorshipUnión Europea. FP7
dc.description.sponsorshipFPI Program by Spanish Ministry of Science and Innovation
dc.description.sponsorshipFP7 Marie Curie Actions of the European Commission, via the Initial Training Network DAGAL under REA grant
dc.description.sponsorshipPrograma Nacional de Astronomía y Astrofísica, España
dc.description.sponsorshipMinisterio de Ciencia e Innovación (MICINN), España
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/35062
dc.identifier.doi10.1093/mnras/stv1579
dc.identifier.issn0035-8711
dc.identifier.officialurlhttp://dx.doi.org/10.1093/mnras/stv1579
dc.identifier.relatedurlhttp://arxiv.org/abs/1504.00678
dc.identifier.relatedurlhttp://mnras.oxfordjournals.org/
dc.identifier.urihttps://hdl.handle.net/20.500.14352/24296
dc.issue.number1
dc.journal.titleMonthly notices of the Royal Astronomical Society
dc.language.isoeng
dc.page.final720
dc.page.initial704
dc.publisherWiley
dc.relation.projectIDDAGAL (289313)
dc.relation.projectIDAYA2009-11137
dc.relation.projectIDAYA2012-30717
dc.relation.projectIDAYA2012-31277
dc.relation.projectIDAYA2013-48226-C3-1-P
dc.rights.accessRightsopen access
dc.subject.cdu52
dc.subject.keywordCompact quiescent galaxies
dc.subject.keywordStar-forming galaxies
dc.subject.keywordDigital sky survey
dc.subject.keywordFundamental plane
dc.subject.keywordSize evolution
dc.subject.keywordStellar population
dc.subject.keywordElliptic galaxies
dc.subject.keywordSystematic variation
dc.subject.keywordSpitzer/Irac sources
dc.subject.keywordScaling relations
dc.subject.ucmAstrofísica
dc.subject.ucmAstronomía (Física)
dc.titleConstraints on the evolutionary mechanisms of massive galaxies since z ∼ 1 from their velocity dispersions
dc.typejournal article
dc.volume.number453
dcterms.referencesAstropy Collaboration, 2013, A&A, 558, A33 Barro G. et al., 2011a, ApJS, 193, 13 Barro G. et al., 2011b, ApJS, 193, 30 Barro G. et al., 2014, ApJ, 795, 145 Belli S., Newman A. B., Ellis R. S., 2014, ApJ, 783, 117 Bertin G., Ciotti L., Del Principe M., 2002, A&A, 386, 149 Blakeslee J. P. et al., 2006, ApJ, 644, 30 Blanton M. R. et al., 2005, AJ, 129, 2562 Buitrago F., Trujillo I., Conselice C. J., Bouwens R. J., Dickinson M., Yan H., 2008, ApJ, 687, L61 Bundy K. et al., 2006, ApJ, 651, 120 Calzetti D., Armus L., Bohlin R. C., Kinney A. L., Koornneef J., StorchiBergmann T., 2000, ApJ, 533, 682 Cappellari M., Emsellem E., 2004, PASP, 116, 138 Cappellari M. et al., 2006, MNRAS, 366, 1126 Cappellari M. et al., 2012, Nature, 484, 485 Cappellari M. et al., 2013, MNRAS, 432, 1709 Cardiel N., 1999, PhD thesis, Univ. Complutense de Madrid, Spain Cebrián M., Trujillo I., 2014, MNRAS, 444, 682 Cimatti A. et al., 2008, A&A, 482, 21 Conselice C. J. et al., 2007, MNRAS, 381, 962 Daddi E. et al., 2005, ApJ, 626, 680 Davis M. et al., 2003, Proc. SPIE, 4834, 161 Davis M. et al., 2007, ApJ, 660, L1 de Bruyne V., Vauterin P., de Rijcke S., Dejonghe H., 2003, MNRAS, 339, 215 Falcón Barroso J. et al., 2011, MNRAS, 417, 1787 Fernández Lorenzo M., Cepa J., Bongiovanni A., Pérez García A. M., Ederoclite A., Lara López M. A., Pović M., Sánchez Portal M., 2011, A&A, 526, AA72 Ferré Mateu A., Vazdekis A., Trujillo I., Sánchez Blázquez P., Ricciardelli E., de la Rosa I. G., 2012, MNRAS, 423, 632 Ferreras I., La Barbera F., de la Rosa I. G., Vazdekis A., de Carvalho R. R., Falcón Barroso J., Ricciardelli E., 2013, MNRAS, 429, L15 Ferreras I. et al., 2014, MNRAS, 444, 906 Fioc M., Rocca-Volmerange B., 1997, A&A, 326, 950 Gavazzi R., Treu T., Rhodes J. D., Koopmans L. V. E., Bolton A. S., Burles S., Massey R. J., Moustakas L. A., 2007, ApJ, 667, 176 Gebhardt K. et al., 2003, ApJ, 597, 239 Hilz M., Naab T., Ostriker J. P., Thomas J., Burkert A., Jesseit R., 2012, MNRAS, 425, 3119 Hopkins P. F., Bundy K., Murray N., Quataert E., Lauer T. R., Ma C.-P., 2009, MNRAS, 398, 898 Hopkins P. F., Bundy K., Hernquist L., Wuyts S., Cox T. J., 2010, MNRAS, 401, 1099 Hsu L.-Y., Stockton A., Shih H.-Y., 2014, ApJ, 796, 92 Jorgensen I., Franx M., Kjaergaard P., 1995, MNRAS, 276, 1341 Kelson D. D., 2003, PASP, 115, 688 Le Borgne D., Rocca-Volmerange B., Prugniel P., Lanc¸on A., Fioc M., Soubiran C., 2004, A&A, 425, 881 Longhetti M., Saracco P., 2009, MNRAS, 394, 774 Longhetti M. et al., 2007, MNRAS, 374, 614 Martín Navarro I. et al., 2015, ApJ, 798, L4 Martínez Manso J. et al., 2011, ApJ, 738, L22 (MM11) Muzzin A., Marchesini D., van Dokkum P. G., Labbé I., Kriek M., Franx M., 2009, ApJ, 701, 1839 Newman A. B., Ellis R. S., Treu T., Bundy K., 2010, ApJ, 717, L103 Newman J. A. et al., 2013, ApJS, 208, 5 Peralta de Arriba L., Balcells M., Falcón Barroso J., Trujillo I., 2014, MNRAS, 440, 1634 (PdA14) Pérez González P. G. et al., 2008, ApJ, 675, 234 Ragone-Figueroa C., Granato G. L., 2011, MNRAS, 414, 3690 Renzini A., 2006, ARA&A, 44, 141 Ruiz P., Trujillo I., Mármol Queraltó E., 2014, MNRAS, 442, 347 Salpeter E. E., 1955, ApJ, 121, 161 Shen S., Mo H. J., White S. D. M., Blanton M. R., Kauffmann G., Voges W., Brinkmann J., Csabai I., 2003, MNRAS, 343, 978 Stockton A., Shih H.-Y., Larson K., 2010, ApJ, 709, L58 Stockton A., Shih H.-Y., Larson K., Mann A. W., 2014, ApJ, 780, 134 Tapia T. et al., 2015, submitted Taylor E. N., Franx M., Brinchmann J., van der Wel A., van Dokkum P. G., 2010, ApJ, 722, 1 Toft S. et al., 2007, ApJ, 671, 285 Treu T., Auger M. W., Koopmans L. V. E., Gavazzi R., Marshall P. J., Bolton A. S., 2010, ApJ, 709, 1195 Trujillo I., Burkert A., Bell E. F., 2004, ApJ, 600, L39 Trujillo I. et al., 2006, MNRAS, 373, L36 Trujillo I., Conselice C. J., Bundy K., Cooper M. C., Eisenhardt P., Ellis R. S., 2007, MNRAS, 382, 109 (T07) Valdes F., Gupta R., Rose J. A., Singh H. P., Bell D. J., 2004, ApJS, 152, 251 van de Sande J. et al., 2013, ApJ, 771, 85 van der Wel A., Holden B. P., Zirm A. W., Franx M., Rettura A., Illingworth G. D., Ford H. C., 2008, ApJ, 688, 48 van Dokkum P. G., Kriek M., Franx M., 2009, Nature, 460, 717 York D. G. et al., 2000, AJ, 120, 1579 Zirm A. W. et al., 2007, ApJ, 656, 66
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