We consider the simultaneous chemical, photometric, and gaseous thermal energy evolution of elliptical galaxies. The evolution of chemical abundances in the intracluster medium (ICM) is set by the differing timescales for gas ejection, via supernovae (SNe)-driven winds, from dwarf, normal, and giant ellipticals, and is monitored concurrently. Emphasis is placed upon the influence of, and sensitivity to, the underlying stellar initial mass function (IMF), star formation efficiency, supernovae Type Ia rates, supernovae remnant (SNR) dynamics, and the most recent advances in stellar nucleosynthesis. Unlike many previous studies, we adhere to a wide range of optical (e.g. colour-metallicity-luminosity relationship) and x-ray (e.g. recent ASCA I...
We numerically investigate the dynamical and chemical processes of the formation of elliptical galax...
We present our X-ray imaging spectroscopic analysis of data from deep Suzuku and XMM-Newton Observat...
We numerically investigate chemodynamical evolution of major disk-disk galaxy mergers in order to ex...
A model which allows the simultaneous monitoring of the chemical, photometric, and thermal evolutio...
openWe describe our work on the chemical evolution of elliptical galaxies, with a particular focus o...
We describe the use of our chemical evolution model to reproduce the abundance patterns observed in ...
In this paper we discuss the chemical evolution of elliptical galaxies and its consequences on the e...
In this paper we present new chemo-spectro-photometric models of elliptical galaxies in which infall...
In preparation for the next generation of x ray telescopes, researchers have begun a program investi...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
We present a new chemical evolution model meant to be a first step in the self-consistent study of b...
Aims: We aim to study the effect of a cosmologically motivated gas infall law for the formation of a...
We present a new chemical evolution model meant to be a first step in the self-consistent study of b...
We update the treatment of chemical evolution in the Munich semi-analytic model, L-GALAXIES. Our new...
We review recent developments in the field of chemodynamical simulations of elliptical galaxies, hig...
We numerically investigate the dynamical and chemical processes of the formation of elliptical galax...
We present our X-ray imaging spectroscopic analysis of data from deep Suzuku and XMM-Newton Observat...
We numerically investigate chemodynamical evolution of major disk-disk galaxy mergers in order to ex...
A model which allows the simultaneous monitoring of the chemical, photometric, and thermal evolutio...
openWe describe our work on the chemical evolution of elliptical galaxies, with a particular focus o...
We describe the use of our chemical evolution model to reproduce the abundance patterns observed in ...
In this paper we discuss the chemical evolution of elliptical galaxies and its consequences on the e...
In this paper we present new chemo-spectro-photometric models of elliptical galaxies in which infall...
In preparation for the next generation of x ray telescopes, researchers have begun a program investi...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
We present a new chemical evolution model meant to be a first step in the self-consistent study of b...
Aims: We aim to study the effect of a cosmologically motivated gas infall law for the formation of a...
We present a new chemical evolution model meant to be a first step in the self-consistent study of b...
We update the treatment of chemical evolution in the Munich semi-analytic model, L-GALAXIES. Our new...
We review recent developments in the field of chemodynamical simulations of elliptical galaxies, hig...
We numerically investigate the dynamical and chemical processes of the formation of elliptical galax...
We present our X-ray imaging spectroscopic analysis of data from deep Suzuku and XMM-Newton Observat...
We numerically investigate chemodynamical evolution of major disk-disk galaxy mergers in order to ex...