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    Rights statement: This is an author-created, un-copyedited version of an article accepted for publication/published in Astrophysical Journal Letters. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The Version of Record is available online at doi:10.3847/2041-8213/abc428

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Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time

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Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time. / Graaff, A.D.; Bezanson, R.; Franx, M. et al.
In: Astrophysical Journal Letters, Vol. 903, No. 2, L30, 10.11.2020.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Graaff, AD, Bezanson, R, Franx, M, van der Wel, A, Bell, EF, D’Eugenio, F, Holden, B, Maseda, MV, Muzzin, A, Pacifici, C, Sande, JVD, Sobral, D, Straatman, CMS & Wu, P-F 2020, 'Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time', Astrophysical Journal Letters, vol. 903, no. 2, L30. https://doi.org/10.3847/2041-8213/abc428

APA

Graaff, A. D., Bezanson, R., Franx, M., van der Wel, A., Bell, E. F., D’Eugenio, F., Holden, B., Maseda, M. V., Muzzin, A., Pacifici, C., Sande, J. V. D., Sobral, D., Straatman, C. M. S., & Wu, P.-F. (2020). Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time. Astrophysical Journal Letters, 903(2), Article L30. https://doi.org/10.3847/2041-8213/abc428

Vancouver

Graaff AD, Bezanson R, Franx M, van der Wel A, Bell EF, D’Eugenio F et al. Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time. Astrophysical Journal Letters. 2020 Nov 10;903(2):L30. Epub 2020 Nov 6. doi: 10.3847/2041-8213/abc428

Author

Graaff, A.D. ; Bezanson, R. ; Franx, M. et al. / Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time. In: Astrophysical Journal Letters. 2020 ; Vol. 903, No. 2.

Bibtex

@article{7299ccee571a431fa70c9f0239d310ae,
title = "Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time",
abstract = "We use the Fundamental Plane (FP) to measure the redshift evolution of the dynamical mass-to-light ratio (Mdyn/L) and the dynamical-to-stellar mass ratio (Mdyn/M*). Although conventionally used to study the properties of early-type galaxies, we here obtain stellar kinematic measurements from the Large Early Galaxy Astrophysics Census span a wide (LEGA-C range ) in Survey star formation for a sample activity. of ∼ In 1400 line massive with previous (log(M studies, * M) > we 10.5 find ) galaxies a strong at evolution 0.6 < z in < M 1.0dynthat /Lg with redshift. In contrast, we find only a weak dependence of the mean value of Mdyn/M* on the specific star formation rate, and a redshift evolution that likely is explained by systematics. Therefore, we demonstrate that star-forming and quiescent galaxies lie on the same, stable mass FP across 0 < z < 1, and that the decrease in Mdyn/Lg toward high redshift can be attributed entirely to evolution of the stellar populations. Moreover, we show that the growth of galaxies in size and mass is constrained to occur within the mass FP. Our results imply either minimal structural evolution in massive galaxies since z ∼ 1, or a tight coupling in the evolution of their morphological and dynamical properties, and establish the mass FP as a tool for studying galaxy evolution with low impact from progenitor bias. ",
author = "A.D. Graaff and R. Bezanson and M. Franx and {van der Wel}, A. and E.F. Bell and F. D{\textquoteright}Eugenio and B. Holden and M.V. Maseda and A. Muzzin and C. Pacifici and J.V.D. Sande and D. Sobral and C.M.S. Straatman and P.-F. Wu",
note = "This is an author-created, un-copyedited version of an article accepted for publication/published in Astrophysical Journal Letters. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The Version of Record is available online at doi:10.3847/2041-8213/abc428",
year = "2020",
month = nov,
day = "10",
doi = "10.3847/2041-8213/abc428",
language = "English",
volume = "903",
journal = "Astrophysical Journal Letters",
issn = "2041-8205",
publisher = "IOP Publishing Ltd",
number = "2",

}

RIS

TY - JOUR

T1 - Tightly coupled morpho-kinematic evolution for massive star-forming and quiescent galaxies across 7Gyr of cosmic time

AU - Graaff, A.D.

AU - Bezanson, R.

AU - Franx, M.

AU - van der Wel, A.

AU - Bell, E.F.

AU - D’Eugenio, F.

AU - Holden, B.

AU - Maseda, M.V.

AU - Muzzin, A.

AU - Pacifici, C.

AU - Sande, J.V.D.

AU - Sobral, D.

AU - Straatman, C.M.S.

AU - Wu, P.-F.

N1 - This is an author-created, un-copyedited version of an article accepted for publication/published in Astrophysical Journal Letters. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The Version of Record is available online at doi:10.3847/2041-8213/abc428

PY - 2020/11/10

Y1 - 2020/11/10

N2 - We use the Fundamental Plane (FP) to measure the redshift evolution of the dynamical mass-to-light ratio (Mdyn/L) and the dynamical-to-stellar mass ratio (Mdyn/M*). Although conventionally used to study the properties of early-type galaxies, we here obtain stellar kinematic measurements from the Large Early Galaxy Astrophysics Census span a wide (LEGA-C range ) in Survey star formation for a sample activity. of ∼ In 1400 line massive with previous (log(M studies, * M) > we 10.5 find ) galaxies a strong at evolution 0.6 < z in < M 1.0dynthat /Lg with redshift. In contrast, we find only a weak dependence of the mean value of Mdyn/M* on the specific star formation rate, and a redshift evolution that likely is explained by systematics. Therefore, we demonstrate that star-forming and quiescent galaxies lie on the same, stable mass FP across 0 < z < 1, and that the decrease in Mdyn/Lg toward high redshift can be attributed entirely to evolution of the stellar populations. Moreover, we show that the growth of galaxies in size and mass is constrained to occur within the mass FP. Our results imply either minimal structural evolution in massive galaxies since z ∼ 1, or a tight coupling in the evolution of their morphological and dynamical properties, and establish the mass FP as a tool for studying galaxy evolution with low impact from progenitor bias. 

AB - We use the Fundamental Plane (FP) to measure the redshift evolution of the dynamical mass-to-light ratio (Mdyn/L) and the dynamical-to-stellar mass ratio (Mdyn/M*). Although conventionally used to study the properties of early-type galaxies, we here obtain stellar kinematic measurements from the Large Early Galaxy Astrophysics Census span a wide (LEGA-C range ) in Survey star formation for a sample activity. of ∼ In 1400 line massive with previous (log(M studies, * M) > we 10.5 find ) galaxies a strong at evolution 0.6 < z in < M 1.0dynthat /Lg with redshift. In contrast, we find only a weak dependence of the mean value of Mdyn/M* on the specific star formation rate, and a redshift evolution that likely is explained by systematics. Therefore, we demonstrate that star-forming and quiescent galaxies lie on the same, stable mass FP across 0 < z < 1, and that the decrease in Mdyn/Lg toward high redshift can be attributed entirely to evolution of the stellar populations. Moreover, we show that the growth of galaxies in size and mass is constrained to occur within the mass FP. Our results imply either minimal structural evolution in massive galaxies since z ∼ 1, or a tight coupling in the evolution of their morphological and dynamical properties, and establish the mass FP as a tool for studying galaxy evolution with low impact from progenitor bias. 

U2 - 10.3847/2041-8213/abc428

DO - 10.3847/2041-8213/abc428

M3 - Journal article

VL - 903

JO - Astrophysical Journal Letters

JF - Astrophysical Journal Letters

SN - 2041-8205

IS - 2

M1 - L30

ER -