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Related papers: Lenticular Galaxies and Their Environments

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Despite numerous efforts, it is still unclear whether lenticular galaxies (S0s) evolve from spirals whose star formation was suppressed, or formed trough mergers or disk instabilities. In this paper we present a pilot study of 21 S0…

Lenticular galaxies are generally thought to have descended from spirals via morphological transformation, although recent numerical simulations have shown that minor or even major merger can also lead to an S0-like remnant. These…

Astrophysics of Galaxies · Physics 2018-08-08 Kanak Saha , Arianna Cortesi

Lenticular galaxies (S0s) represent the majority of early-type galaxies in the local Universe, but their formation channels are still poorly understood. While galaxy mergers are obvious pathways to suppress star formation and increase bulge…

We test the theory that lenticular (S0) galaxies form from spirals whose star formation has been shut down. We use the globular cluster specific frequency S_N, defined as the number of globular clusters normalised by the galaxy luminosity…

Astrophysics · Physics 2009-11-13 J. M. Barr , A. G. Bedregal , A. Aragon-Salamanca , M. R. Merrifield , S. P. Bamford

The data collected in the Shapley-Ames catalog of bright galaxies show that lenticular (S0) galaxies are typically about a magnitude fainter than both elliptical (E) and early spiral (Sa) galaxies. Hubble (1936) was therefore wrong to…

Cosmology and Nongalactic Astrophysics · Physics 2009-11-13 Sidney van den Bergh

It is well established that there are at least two main channels to form lenticular (or S0) galaxies. The first, which we name "faded spiral" scenario, includes quenching events that led to consumption or removal of gas from a spiral…

Lenticular galaxies remain remarkably mysterious as a class. Observations to date have not led to any broad consensus about their origins, properties and evolution, though they are often thought to have formed in one big burst of star…

Astrophysics · Physics 2009-11-07 Gary A. Welch , Leslie J. Sage

The origin of S0 galaxies is discussed in the framework of early mergers in a Cold Dark Matter cosmology, and in a scenario where S0s are assumed to be former spirals stripped of gas. From an analysis of 127 early-type disk galaxies…

Astrophysics of Galaxies · Physics 2009-11-13 E. Laurikainen , H. Salo , R. Buta , J. H. Knapen

Spectroscopic observations of three lenticular (S0) galaxies (NGC 1167, NGC 4150, and NGC 6340) and one SBa galaxy (NGC 2273) have been taken with the 6-m telescope of the Special AstrophysicalObservatory of the Russian Academy of Sciences…

Astrophysics · Physics 2009-11-13 A. V. Zasov , A. V. Moiseev , A. V. Khoperskov , E. A. Sidorova

Lenticular galaxies with M_B < -21.5 are almost exclusively unbarred, whereas both barred and unbarred objects occur at fainter luminosity levels. This effect is observed both for objects classified in blue light, and for those that were…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-05 Sidney van den Bergh

(Abriged) This is a short review on the evolution of elliptical and lenticular/S0 galaxies in the dense environment of rich clusters for look-back times of more than half the age of the Universe. In addition, new data are presented for the…

Astrophysics · Physics 2007-05-23 Bodo L. Ziegler

Gas stripping of spiral galaxies or mergers are thought to be the formation mechanisms of lenticular galaxies. In order to determine the conditions in which each scenario dominates, we derive stellar populations of both the bulge and disk…

By studying the individual star-formation histories of the bulges and discs of lenticular (S0) galaxies, it is possible to build up a sequence of events that leads to the cessation of star formation and the consequent transformation from…

Astrophysics of Galaxies · Physics 2015-06-23 Evelyn J. Johnston , Alfonso Aragon-Salamanca , Michael R. Merrifield

The individual star formation histories of bulges and discs of lenticular (S0) galaxies can provide information on the processes involved in the quenching of their star formation and subsequent transformation from spirals. In order to study…

Astrophysics of Galaxies · Physics 2015-06-19 Evelyn J. Johnston , Alfonso Aragon-Salamanca , Michael R. Merrifield

The transformations taking place in late-type galaxies in the environment of rich clusters of galaxies at z=0 are reviewed. From the handful of late-type galaxies that inhabit local clusters, whether they were formed in-situ and survived as…

Astrophysics · Physics 2011-05-05 A. Boselli , G. Gavazzi

Rings in S0s are enigmatic features which can however betray the evolutionary paths of particular galaxies. We have undertaken long-slit spectroscopy of five lenticular galaxies with UV-bright outer rings. The observations have been made…

Astrophysics of Galaxies · Physics 2019-06-19 Irina S. Proshina , Alexei Yu. Kniazev , Olga K. Sil'chenko

As one type of blue early-type galaxies, the evolutionary history and fate of star-forming lenticular galaxies (S0s) remain elusive. We selected 134 star-forming S0s from the SDSS-IV MaNGA survey and found that they have steep and warped…

Astrophysics of Galaxies · Physics 2024-12-20 Pei-Bin Chen , Junfeng Wang , Tian-Wen Cao , Mengting Shen , Xiaoyu Xu

Lenticular galaxies (S0s) are formed mainly from the gas stripping of spirals in the cluster. But how S0s form and evolve in the field is still untangled. Based on spatially resolved observations from the optical Hispanic Astronomical…

The origins of lenticular galaxies (S0s) can be classified into two main categories: ``minor mergers" in low-density environments (LDEs) and ``faded spirals" in high-density environments (HDEs). The transitional phase in the evolution of…

Astrophysics of Galaxies · Physics 2024-09-10 Pei-Bin Chen , Junfeng Wang , Yan-Mei Chen , Xiao-Yu Xu , Tian-Wen Cao

Different processes have been proposed to explain the formation of S0s, including mergers, disc instabilities and quenched spirals. These processes are expected to dominate in different environments, and thus leave characteristic footprints…

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