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Spectral Energy Distribution Fitting of Spatially Resolved Z~2 Galaxies

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Author :
Release : 2010
Genre : Galaxies
Kind : eBook
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Book Synopsis Spectral Energy Distribution Fitting of Spatially Resolved Z~2 Galaxies by : Michael Palmer (B.Sc.)

Download or read book Spectral Energy Distribution Fitting of Spatially Resolved Z~2 Galaxies written by Michael Palmer (B.Sc.). This book was released on 2010. Available in PDF, EPUB and Kindle. Book excerpt:

The Properties of Star-Forming Galaxies at Z~2

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Author :
Release : 2005
Genre : Science
Kind : eBook
Book Rating : 977/5 ( reviews)

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Book Synopsis The Properties of Star-Forming Galaxies at Z~2 by : Dawn Erb

Download or read book The Properties of Star-Forming Galaxies at Z~2 written by Dawn Erb. This book was released on 2005. Available in PDF, EPUB and Kindle. Book excerpt: We study the properties of star-forming galaxies at redshift z 2, an era in which a substantial fraction of the stellar mass in the universe formed. Using 114 near-IR spectra of the H-alpha and [N II] emission lines and model spectral energy distributions fit to rest-frame UV through IR photometry, we examine the galaxies' star formation properties, dynamical masses and velocity dispersions, spatially resolved kinematics, outflow properties, and metallicities as a function of stellar mass and age. While the stellar masses of the galaxies in our sample vary by a factor of 500, dynamical masses from H-alpha velocity dispersions and indirect estimates of gas masses imply that the variation of stellar mass is due as much to the evolution of the stellar population and the conversion of gas into stars as to intrinsic differences in the total masses of the galaxies. About 10% of the galaxies are apparently young starbursts with high gas fractions, caught just as they have begun to convert large amounts of gas into stars. Using the [N II]/H-alpha ratio of composite spectra to estimate the average oxygen abundance, we find a monotonic increase in metallicity with stellar mass. From the estimated gas fractions, we conclude that the observed mass-metallicity relation is primarily driven by the increase in metallicity as gas is converted to stars. The picture that emerges is of galaxies with a broad range in stellar population properties, from young galaxies with ages of a few tens of Myr, stellar masses M 10 DEGREES9 Msun, and metallicities Z 1/3 Zsun, to massive objects with M* 10 DEGREES11 Msun, Z Zsun, and ages as old as the universe allows. All, however, are rapidly star-forming, power galactic-scale outflows, and have masses in gas and stars of at least 10 DEGREES10 Msun, in keeping with their likely role as the progenitors of elliptical galaxies

The Spectral Energy Distributions of Gas-Rich Galaxies

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Release : 2005-04-28
Genre : Science
Kind : eBook
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Book Synopsis The Spectral Energy Distributions of Gas-Rich Galaxies by : Cristina C. Popescu

Download or read book The Spectral Energy Distributions of Gas-Rich Galaxies written by Cristina C. Popescu. This book was released on 2005-04-28. Available in PDF, EPUB and Kindle. Book excerpt: Heidelberg, Germany, 4-8 October 2004

Probing the Stellar, Gaseous, and Dust Properties of Galaxies Through Analysis of Their Spectral Energy Distributions

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Release : 2015
Genre : Galaxies
Kind : eBook
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Book Synopsis Probing the Stellar, Gaseous, and Dust Properties of Galaxies Through Analysis of Their Spectral Energy Distributions by : Rafael T. Eufrasio

Download or read book Probing the Stellar, Gaseous, and Dust Properties of Galaxies Through Analysis of Their Spectral Energy Distributions written by Rafael T. Eufrasio. This book was released on 2015. Available in PDF, EPUB and Kindle. Book excerpt: The spectral energy distributions (SEDs) of galaxies are shaped by their physical properties and they are our primary source of information on galaxies stellar, gaseous, and dust content. Nearby galaxies (less than 100 Mpc away) are spatially resolved by current telescopes from the ultraviolet (UV) to radio wavelengths, allowing the study of the SEDs of subgalactic regions. Such studies are necessary for deriving maps and spatial trends of the physical properties across a galaxy. In principle, the complex history of the formation, growth, and evolution of a galaxy or a region of a galaxy can be inferred from its radiative output. In practice, this task is complicated by the fact that a significant fraction of the star formation activity takes place in dust obscured regions, in which a significant fraction of the stellar radiative output is absorbed, scattered, and reradiated by the gas and dust in the interstellar medium (ISM). This reprocessing of the stellar radiation takes place in ionized interstellar gas regions (H II regions) surrounding massive hot stars, in diffuse atomic gas (H I regions), and in dense molecular clouds. For this work, we have analyzed two galaxies in detail, NGC 6872 and NGC 6946, also known as Condor and Fireworks Galaxy, respectively. The Condor galaxy is the largest-known spiral galaxy. It is part a group of galaxies, the Pavo group, with 12 other galaxies. It has, however, interacted in the past ~150 Myr with a smaller companion, previously believed to have shaped the physical extent of the giant spiral. We have performed detailed SED fitting from the UV to mid-infrared (mid-IR) to obtain star formation histories of seventeen sub-galactic regions across the Condor. These regions are large enough to be galaxies themselves, with 32.3 million light-years in diameter. We find that the Condor was already very massive before this interaction and that it was much less affected by the passage of the companion than previously thought. We also found that a significant fraction of the 22 micron flux, usually considered a complementary measure of the UV-optically determined star formation rate (SFR), is not associated with the recent (last 100 Myr) star formation activity. A fraction of the 22 micron flux represents the energy reradiated by dust heated by intermediate age, long-lived stars. For the Fireworks galaxy, data coverage from the UV to radio allowed us to measure the full radiative budget from the stellar emission (bolometric luminosities) and the fraction coming from reprocessing by dust and gas in the IR. We present a self-consistent, physically-motivated model to describe SEDs of subgalactic regions across the galaxy, which simultaneously fits the stellar attenuated SED from UV to mid-infrared emission, the reradiated infrared emission from the dust, the radio continuum emission from the gas, as well as the intensity of select recombination lines from the ionized gas. We present a framework capable of determine the IR fraction not associated with the recent SFR. This work provides a novel and crucial step towards understanding the physical processes responsible for various empirical laws to determine SFR in galaxies, the correlation between the IR and stellar emission, and the physical conditions of the ISM. It provides essential inputs for more detailed modeling of the spatially-resolved photometric and chemical (dust and gas) evolution of galaxies.

Spectral Energy Distribution Fitting of the Bulge and Disk Components of Interacting Galaxies

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Release : 2013
Genre :
Kind : eBook
Book Rating : 385/5 ( reviews)

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Book Synopsis Spectral Energy Distribution Fitting of the Bulge and Disk Components of Interacting Galaxies by : Michael J. D. Palmer

Download or read book Spectral Energy Distribution Fitting of the Bulge and Disk Components of Interacting Galaxies written by Michael J. D. Palmer. This book was released on 2013. Available in PDF, EPUB and Kindle. Book excerpt:

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