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Metal Enrichment, Dust and Star-formation in Galaxies at High Redshifts. II. Lyman [alpha] Emission from the Z

Metal Enrichment, Dust and Star-formation in Galaxies at High Redshifts. II. Lyman [alpha] Emission from the Z PDF Author: Richard Waller Hunstead
Publisher:
ISBN:
Category : H II regions (Astrophysics)
Languages : en
Pages : 25

Book Description


Metal Enrichment, Dust and Star-formation in Galaxies at High Redshifts. II. Lyman [alpha] Emission from the Z

Metal Enrichment, Dust and Star-formation in Galaxies at High Redshifts. II. Lyman [alpha] Emission from the Z PDF Author: Richard Waller Hunstead
Publisher:
ISBN:
Category : H II regions (Astrophysics)
Languages : en
Pages : 25

Book Description


Metal-enrichment, Dust and Star-formation in Galaxies at High Redshifts

Metal-enrichment, Dust and Star-formation in Galaxies at High Redshifts PDF Author: Max Pettini
Publisher:
ISBN:
Category : Galaxies
Languages : en
Pages : 39

Book Description


Metal-enrichment, Dust and Star-formation in Galaxies at High Redshifts

Metal-enrichment, Dust and Star-formation in Galaxies at High Redshifts PDF Author: Richard Waller Hunstead
Publisher:
ISBN:
Category : Galaxies
Languages : en
Pages : 25

Book Description
Summary: QSO absorption systems with damped Ly[alpha] lines have been suggested as the high-redshift progenitors of present-day disk galaxies. As part of a survey of element abundances and star-formation rates in these systems, long-slit, 1.5Å resolution spectroscopic observations of the Zem = 2.67 QSO 0836+113 were obtained. The first detection of a Ly[alpha] emission from a galaxy identified by its absorption signature is reported.

The Lyman [alpha] Forest in QSOs

The Lyman [alpha] Forest in QSOs PDF Author: Max Pettini
Publisher:
ISBN:
Category : Stars
Languages : en
Pages : 37

Book Description


The Hubble Deep Field

The Hubble Deep Field PDF Author: Space Telescope Science Institute (U.S.). Symposium
Publisher: Cambridge University Press
ISBN: 9780521630979
Category : Science
Languages : en
Pages : 328

Book Description
The Hubble Deep Field (HDF) is the deepest optical image of the Universe ever obtained. It is the result of a 150-orbit observing programme with the Hubble Space Telescope. It provides a unique resource for researchers studying the formation and evolution of stars and galaxies. This timely volume provides the first comprehensive overview of the HDF and its scientific impact on our understanding in cosmology. It presents articles by a host of world experts who gathered together at an international conference at the Space Telescope Science Institute. The contributions combine observations of the HDF at a variety of wavelengths with the latest theoretical progress in our understanding of the cosmic history of star and galaxy formation. The HDF is set to revolutionize our understanding in cosmology. This book therefore provides an indispensable reference for all graduate students and researchers in observational or theoretical cosmology.

From Dusty to Dust-free

From Dusty to Dust-free PDF Author: Logan Houston Jones
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
The creation of new stars from cold gas is one of the most fundamental astrophysical processes that can be observed in our own galaxy and in others. At a broad level, the modern phenomenological picture of how stars form is consistent with observations of systems ranging from nearby molecular clouds to the most distant galaxies. Many gaps and limitations in the details of such a picture, however, remain unfilled and unanswered. For example, questions remain about the interplay between star formation and chemical enrichment in blue, metal-poor galaxies and the impact of that relationship in cosmic reionization -- one of the final frontiers of observational extragalactic astrophysics. Meanwhile, on the other end of the electromagnetic and metallicity spectrum, there exists a population of high-redshift, far-infrared-bright, and heavily dust-obscured starbursting galaxies that represent a fleeting but possibly integral stage in the growth of massive galaxies and of dense, large-scale structures like (proto)clusters of galaxies. However, the mechanism(s) that trigger such starbursts, especially in dense environments, remains ambiguous. The research that comprises this dissertation aims to answer two questions that, while both relevant to astronomers' understanding of the birth and evolution of galaxies in the broadest sense, are largely disjoint from one another. These questions are: 1) What are the intermediate- to high-redshift analogs to the sources that reionized the universe at very early times?; and 2) As a function of redshift and/or environment, how common are massively star-forming, dust-obscured galaxies? Because these questions are so different from one another, this dissertation will be split into two major parts. In the first, I present a search in two legacy fields (the GOODS-North and the GOODS-South) for galaxies at high redshift that may be sources of ionizing ultraviolet photons. Such objects are expected to be analogs, in various ways, to the first generation of galaxies, and thus provide clues to the nature of very-high-redshift galaxies that will be discovered en masse by future ground- and space-based observatories. In the second part, I present the spectroscopic confirmation of an overdensity of dusty starbursting galaxies at $z \approx 3.14$, signposting a protocluster of galaxies near the peak of star formation activity in the universe. Compared to similar recent discoveries in the literature, this new protocluster is relatively late-forming and includes several of the most infrared-luminous starbursts currently known. This makes it an excellent laboratory for testing theories of starburst triggering and the subsequent buildup of stellar mass in dense environments. In the final chapter of this dissertation, I reiterate the key results of the research presented in chapters 2, 3, and 5.

Galaxies at High Redshift

Galaxies at High Redshift PDF Author: I. Pérez-Fournon
Publisher: Cambridge University Press
ISBN: 9780521825917
Category : Science
Languages : en
Pages : 302

Book Description
This volume presents lectures of the XI Canary Islands Winter School of Astrophysics written by experts in the field.

Low-metallicity Star Formation (IAU S255)

Low-metallicity Star Formation (IAU S255) PDF Author: International Astronomical Union. Symposium
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 448

Book Description
Although low-mass metal-poor galaxies in the local universe have often been proposed as the 'primordial building blocks' in the hierarchical scenario of structure formation, several lines of evidence suggest that this may not be true. Moreover, it is not clear to what extent dwarf galaxies, because they are metal poor and because of their kinematics and structure, can tell us about how star formation proceeded in the early universe. This volume provides an overview and the most recent advances in this debate. IAU Symposium 255 presents the most up-to-date developments in six key areas, including: Population III and metal-free star formation; metal-enrichment, chemical evolution and feedback; explosive events in low-metallicity environments; dust and gas as seeds for metal-poor star formation; metal-poor initial mass functions, stellar evolution and star-formation histories; and low-metallicity star formation in the local universe. This overview is at a level suitable for research astronomers and graduate students.

Probing the Impact of Metallicity on the Dust Properties in Galaxies

Probing the Impact of Metallicity on the Dust Properties in Galaxies PDF Author: Aurélie Rémy-Ruyer
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
As galaxies evolve, their Interstellar Medium (ISM) becomes continually enriched with metals, and this metal enrichment influences the subsequent star formation. Low metallicity dwarf galaxies of the local Universe are ideal candidates to study the influence of metal enrichment on the ISM properties of galaxies and gives us insight into the enrichment process and star formation under ISM conditions that may provide clues to conditions in early universe metal-poor systems. Previous studies have shown that the ISM of dwarf galaxies poses a number of interesting puzzles in terms of the abundance of dust grains, the dust composition and even the FIR emission processes. However these studies were limited to the warmer dust emitting at wavelengths shorter than 200 microns and were done only on a small number of dwarf galaxies. Thanks to its increased sensitivity and resolution in FIR and submillimeter (submm) wavelengths, Herschel gives us a new view on the cold dust properties in galaxies and enables us to study the lowest metallicity galaxies in a systematic way. In this work, I carry out a study of the dust properties in dwarf galaxies and compare with more metal rich environments, in order to address the question of the impact of metallicity on the dust properties. The novelty of this work lays in the fact that dwarf galaxies are studied here in a systematic way, enabling us to derive and quantify the general properties that are representative of these systems. This study is conducted over the full IR-to-submm range, using new FIR/submm Herschel observations, Spitzer, WISE, IRAS and 2MASS data. We complete this set of data with longer submm measurements from ground-based facilities such as APEX and JCMT to study the presence and characteristics of the submm excess in my sample of galaxies. I also collect Hi and CO data to access the gas properties of the galaxies and study the evolution of the G/D with metallicity. Our study reveal different dust properties in low-metallicity environments than that observed in more metal-richs systems (e.g., an overall warmer dust component). An excess submm emission is often apparent near and/or beyond 500 microns rendering large uncertainties in the dust properties, even for something as fundamental as dust masses. Some of the smallest excesses can be explained by using another dust composition with more emissive grains. Ideal tracer of the chemical evolutionary stage of a galaxy, the gas-to-dust mass ratios (G/D) is found to be much higher than what is expected by simple chemical evolution models. Interpreted with more sophisticated chemical evolution models, including dust growth in the ISM and/or episodic star formation, the relation of the G/D with metallicity and its scatter can be explained by the wide variety of environments we are considering.

Towards Understanding Galaxies at Large Redshift

Towards Understanding Galaxies at Large Redshift PDF Author: Richard G. Kron
Publisher: Springer Science & Business Media
ISBN: 9400929196
Category : Science
Languages : en
Pages : 346

Book Description
This workshop was intended as an update and an extension of the workshop 011 the "Spectral Evolution of Galaxies" that was held in Erice two years ago. It concentrates 011 Ilew developments concerning galaxies seen at large look back times. This seemed also a good opportunity to look ahead to the next generation of ground- and space based instrumentation, and to consider various future strategies for collecting information concerning the edge of the observable universe. The main idea was to bring together people with specialities in modelling galaxy components (such as stars, clusters, gas, and dust) as well as whole stellar systems (stellar populations, star formation rates, chemical enrichment), and people specialized in making direct measurements of galaxies and clusters at large look back times. The confrontation of expectations and observations was planned to be the central theme of the conference, which explains the title "Towards Understanding Galaxies at Large Redshift". The first part of the workshop focussed on the physical processes that operate in galaxies, and that would likely have some observable manifestation at large redshifts. In the second part the most recent observational work was reported, and we were pleased to have the participation of most of the groups active in this field. The last part was directed towards new approaches to be made possible by the next generation of instrumentation, although in general all the contributions were indeed in this spirit of setting more ambitious goals.