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Gravitational microlensing is a new technique for studying the surfaces of distant stars. A point mass lens, usually a low-mass star from the disk, will typically resolve the surface of a red giant in the Galactic bulge, as well as amplify…

Astrophysics · Physics 2007-05-23 Dimitar D. Sasselov

Models of population synthesis for the Galaxy have been developed in order to understand galactic structure and evolution. They allow to test scenarii of evolution by comparisons between model predictions and observed distributions.…

Astrophysics · Physics 2009-10-22 A. C. Robin

We review the use of emission-lines for understanding galaxy evolution, focusing on excitation source, metallicity, ionization parameter, ISM pressure and electron density. We show that the UV, optical and infrared contain complementary…

Astrophysics of Galaxies · Physics 2019-10-23 Lisa J. Kewley , David C. Nicholls , Ralph S. Sutherland

We developed a new semi-analytic galaxy formation model: Galaxy Assembly with Binary Evolution (GABE). For the first time we introduce binary evolution into semi-analytic models of galaxy formation by using Yunnan-II stellar population…

Astrophysics of Galaxies · Physics 2019-11-06 Zhen Jiang , Jie Wang , Liang Gao , Fenghui Zhang , Qi Guo , Lan Wang , Jun Pan

We constrain the evolution of the galaxy mass and luminosity functions from the analysis of (public) multi-wavelength data in the Chandra Deep Field South (CDFS) area, obtained from the GOODS and other projects, and including very deep…

EMU is a wide-field radio continuum survey planned for the new Australian Square Kilometre Array Pathfinder (ASKAP) telescope. The primary goal of EMU is to make a deep (rms ~ 10 microJy/beam) radio continuum survey of the entire Southern…

The Line Emission Mapper (LEM) is an X-ray Probe for the 2030s that will answer the outstanding questions of the Universe's structure formation. It will also provide transformative new observing capabilities for every area of astrophysics,…

Instrumentation and Methods for Astrophysics · Physics 2023-04-14 Ralph Kraft , Maxim Markevitch , Caroline Kilbourne , Joseph S. Adams , Hiroki Akamatsu , Mohammadreza Ayromlou , Simon R. Bandler , Marco Barbera , Douglas A. Bennett , Anil Bhardwaj , Veronica Biffi , Dennis Bodewits , Akos Bogdan , Massimiliano Bonamente , Stefano Borgani , Graziella Branduardi-Raymont , Joel N. Bregman , Joseph N. Burchett , Jenna Cann , Jenny Carter , Priyanka Chakraborty , Eugene Churazov , Robert A. Crain , Renata Cumbee , Romeel Dave , Michael DiPirro , Klaus Dolag , W. Bertrand Doriese , Jeremy Drake , William Dunn , Megan Eckart , Dominique Eckert , Stefano Ettori , William Forman , Massimiliano Galeazzi , Amy Gall , Efrain Gatuzz , Natalie Hell , Edmund Hodges-Kluck , Caitriona Jackman , Amir Jahromi , Fred Jennings , Christine Jones , Philip Kaaret , Patrick J. Kavanagh , Richard L. Kelley , Ildar Khabibullin , Chang-Goo Kim , Dimitra Koutroumpa , Orsolya Kovacs , K. D. Kuntz , Erwin Lau , Shiu-Hang Lee , Maurice Leutenegger , Sheng-Chieh Lin , Carey Lisse , Ugo Lo Cicero , Lorenzo Lovisari , Dan McCammon , Sean McEntee , Francois Mernier , Eric D. Miller , Daisuke Nagai , Michela Negro , Dylan Nelson , Jan-Uwe Ness , Paul Nulsen , Anna Ogorzalek , Benjamin D. Oppenheimer , Lidia Oskinova , Daniel Patnaude , Ryan W. Pfeifle , Annalisa Pillepich , Paul Plucinsky , David Pooley , Frederick S. Porter , Scott Randall , Elena Rasia , John Raymond , Mateusz Ruszkowski , Kazuhiro Sakai , Arnab Sarkar , Manami Sasaki , Kosuke Sato , Gerrit Schellenberger , Joop Schaye , Aurora Simionescu , Stephen J. Smith , James F. Steiner , Jonathan Stern , Yuanyuan Su , Ming Sun , Grant Tremblay , Nhut Truong , James Tutt , Eugenio Ursino , Sylvain Veilleux , Alexey Vikhlinin , Stephan Vladutescu-Zopp , Mark Vogelsberger , Stephen A. Walker , Kimberly Weaver , Dale M. Weigt , Jessica Werk , Norbert Werner , Scott J. Wolk , Congyao Zhang , William W. Zhang , Irina Zhuravleva , John ZuHone

Metal-poor stars are important tools for tracing the early history of the Milky Way, and for learning about the first generations of stars. Simulations suggest that the oldest metal-poor stars are to be found in the inner Galaxy. Typical…

We determine the evolution of the galaxy luminosity function (LF) as a function of spectral type using the Autofib redshift survey, a compendium of over 1700 galaxy redshifts in various magnitude-limited samples spanning b_J=11.5-24.0. To…

Astrophysics · Physics 2015-06-24 Jeremy Heyl , Matthew Colless , Richard S. Ellis , Tom Broadhurst

We perform a deep search for galaxies in the redshift range 6.5<z<7.5, to measure the evolution of the number density of luminous galaxies in this redshift range and derive useful constraints on the evolution of their Luminosity Function.…

Promising methods for studying galaxy evolution rely on optical emission line width measurements to compare intermediate-redshift objects to galaxies with equivalent masses at the present epoch. However, emission lines can be misleading. We…

Astrophysics · Physics 2009-11-07 Elizabeth Barton Gillespie , Liese van Zee

Long Gamma-Ray Bursts (LGRBs) have been shown to be powerful probes of the Universe, in particular to study the star formation rate up to very high redshift ($z \sim 9$). Since LGRBs are produced by only a small fraction of massive stars,…

High Energy Astrophysical Phenomena · Physics 2021-06-02 Jesse T. Palmerio , Frédéric Daigne

Voids represent a unique environment for the study of galaxy evolution, as the lower density environment is expected to result in shorter merger histories and slower evolution of galaxies. This provides an ideal opportunity to test theories…

These are advanced lecture notes covering recent developments in the methodology used to analyse galaxy surveys. The focus is particularly on direct measurements of the galaxy power spectrum although I also discuss its Fourier transform,…

Cosmology and Nongalactic Astrophysics · Physics 2018-10-11 Will J. Percival

So far, high resolution techniques on the one hand provide morphological information on bright nearby objects. On the other hand, telescopes with large collecting areas allow us to detect very faint and distant objects, but not to obtain a…

Astrophysics · Physics 2007-05-23 Markus Wittkowski

We present models of the extragalactic background light (EBL) based on several scenarios of galaxy formation and evolution. We have treated galaxy formation with the Press-Schecter approximation for both cold dark matter (CDM) and cold+hot…

Astrophysics · Physics 2008-02-03 Donn MacMinn , Joel R. Primack

We present a conceptual design for a space based Galactic Exoplanet Survey Telescope (GEST) which will use the gravitational microlensing technique to detect extra solar planets with masses as low as that of Mars at all separations >~ 1 AU.…

Astrophysics · Physics 2007-05-23 David P. Bennett , Sun Hong Rhie

The physical processes driving the evolution of star formation (SF) in galaxies over cosmic time still present many open questions. Recent galaxy surveys allow now to study these processes in great detail at intermediate redshift. In this…

The gravitational lensing effect provides various ways to study the mass environment of galaxies. We investigate how galaxy-galaxy(-galaxy) lensing can be used to test models of galaxy formation and evolution. We consider two semi-analytic…

Cosmology and Nongalactic Astrophysics · Physics 2013-01-11 Hananeh Saghiha , Stefan Hilbert , Peter Schneider , Patrick Simon
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