Local Starbursts in a Cosmological Context
arXiv:astro-ph/0502022 · doi:10.1007/1-4020-3539-X_1
Abstract
In this contribution I introduce some of the major issues that motivate the conference, with an emphasis on how starbursts fit into the ``big picture''. I begin by defining starbursts in several different ways, and discuss the merits and limitations of these definitions. I will argue that the most physically useful definition of a starburst is its ``intensity'' (star formation rate per unit area). This is the most natural parameter to compare local starbursts with physically similar galaxies at high redshift, and indeed I will argue that local starbursts are unique laboratories to study the processes at work in the early universe. I will describe how NASA's GALEX mission has uncovered a rare population of close analogs to Lyman Break Galaxies in the local universe. I will then compare local starbursts to the Lyman-Break and sub-mm galaxies high redshift populations, and speculate that the multidimensional ``manifold'' of starbursts near and far can be understood largely in terms of the Schmidt/Kennicutt law and galaxy mass-metallicity relation. I will briefly summarize he properties of starburst-driven galactic superwinds and their possible implications for the evolution of galaxies and the IGM. These complex multiphase flows are best studied in nearby starbursts, where we can study the the hot X-ray gas that contains the bulk of the energy and newly produced metals.
Proceedings of the Conference "Starbursts: Fropm 30 Doradus to Lyman Break Galaxies"
References in corpus (12)
- The Origin of the Mass--Metallicity Relation: Insights from 53,000 Star-Forming Galaxies in the SDSS
- The physical properties of star forming galaxies in the low redshift universe
- Rest-Frame Ultraviolet Spectra of z~3 Lyman Break Galaxies
- On the Maximum Luminosity of Galaxies and Their Central Black Holes: Feedback From Momentum-Driven Winds
- Galaxies and Intergalactic Matter at Redshift z~3: Overview
- A high spatial resolution X-ray and H-alpha study of hot gas in the halos of star-forming disk galaxies. I. Spatial and spectral properties of the diffuse X-ray emission
- The GALEX-VVDS Measurement of the Evolution of the Far-Ultraviolet Luminosity Density and the Cosmic Star Formation Rate
- Dust attenuation in the nearby Universe: comparison between galaxies selected in the ultraviolet or in the infrared
- The GALEX-VVDS Measurement of the Evolution of the 1500A Luminosity Function
- The Properties of Ultraviolet-Luminous Galaxies at the Current Epoch
- GALEX Observations of the Ultraviolet Halos of NGC 253 and M82
- A Vigorous Starburst in the SCUBA Galaxy N2 850.4
Cited by in corpus (14)
- Star Formation in NGC5194 (M51a): The Panchromatic View from GALEX to Spitzer
- Dwarf Galaxy Starburst Statistics in the Local Volume
- The Nature of Starbursts : II. The Duration of Starbursts in Dwarf Galaxies
- The 1-1000 micron SEDs of far-infrared galaxies
- The H alpha Galaxy Survey. VIII. Close companions and interactions, and the definition of starbursts
- The True Durations of Starbursts: HST Observations of Three Nearby Dwarf Starburst Galaxies
- Hubble Tarantula Treasury Project: Unraveling Tarantula's Web. I. Observational overview and first results
- The properties of the host galaxy and the immediate environment of GRB 980425 / SN 1998bw from the multi-wavelength spectral energy distribution
- Spectral Modeling of the Charge-Exchange X-ray Emission from M82
- GOODS-ALMA 2.0: Starbursts in the main sequence reveal compact star formation regulating galaxy evolution prequenching
- The central region of M83: Massive star formation, kinematics, and the location and origin of the nucleus
- A Multiwavelength Study on the Fate of Ionizing Radiation in Local Starbursts
- The SUNBIRD survey: the K-band luminosity functions of young massive clusters in intensely star-forming galaxies
- Massive Star Formation in the Ultraviolet Observed with the Hubble Space Telescope