Skip to main content
Home
Department Of Physics text logo
  • Research
    • Our research
    • Our research groups
    • Our research in action
    • Research funding support
    • Summer internships for undergraduates
  • Study
    • Undergraduates
    • Postgraduates
  • Engage
    • For young people
    • For teachers
    • For the public
    • For alumni
    • For business
  • Support
Menu
Part of a WEAVE fibre configuration

Part of the WEAVE focal plane showing optical fibres positioned on a set of targets in the telescope focal plane.

Prof Gavin Dalton

Professor of Astrophysics

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • Astronomical instrumentation
  • Extremely Large Telescope
Gavin.Dalton@physics.ox.ac.uk
  • About
  • Research
  • Publications

OPTIMOS-EVE design trade-off analysis

Society of Photo-Optical Instrumentation Engineers (SPIE) 7735 (2010) 5-5

Authors:

F Chemla, G Dalton, I Guinouard, J Pragt, E Sawyer, P Spanò, IA Tosh, MI Andersen, R Navarro, F Hammer, L Kaper

Overview of the GYES instrument: a multifibre high-resolution spectrograph for the prime focus of the Canada-France-Hawaii Telescope

Society of Photo-Optical Instrumentation Engineers (SPIE) 7735 (2010) 4-4

Authors:

S Mignot, M Cohen, G Dalton, J-L Dournaux, G Fasola, I Guinouard, D Horville, J-M Huet, P Laporte, I Lewis, F Royer

Project overview of OPTIMOS-EVE: the fibre-fed multi-object spectrograph for the E-ELT

Society of Photo-Optical Instrumentation Engineers (SPIE) 7735 (2010) 2-2

Authors:

R Navarro, F Chemla, P Bonifacio, H Flores, I Guinouard, J-M Huet, M Puech, F Royer, JH Pragt, G Wulterkens, EC Sawyer, ME Caldwell, IAJ Tosh, MS Whalley, GFW Woodhouse, P Spanò, P Di Marcantonio, MI Andersen, GB Dalton, L Kaper, F Hammer

HiZELS: the High Redshift Emission Line Survey with UKIRT

(2010)

Authors:

Philip Best, Ian Smail, David Sobral, Jim Geach, Timothy Garn, Rob Ivison, Jaron Kurk, Gavin Dalton, Michele Cirasuolo, Mark Casali
More details from the publisher

Obscured star formation at z = 0.84 with HiZELS: The relationship between star formation rate and Hα or ultraviolet dust extinction

Monthly Notices of the Royal Astronomical Society 402:3 (2010) 2017-2030

Authors:

T Garn, D Sobral, PN Best, JE Geach, I Smail, M Cirasuolo, GB Dalton, JS Dunlop, RJ McLure, D Farrah

Abstract:

We compare Hα, ultraviolet (UV) and infrared (IR) indicators of star formation rate (SFR) for a well-defined sample of z = 0.84 emission-line galaxies from the High-. z Emission Line Survey (HiZELS). Using emission-line, optical, IR, radio and X-ray diagnostics, we estimate that 5-11 per cent of Hα emitters at this redshift are active galactic nuclei. We detect 35 per cent of the Hα emitters individually at 24 μm, and stack the locations of star-forming emitters on deep 24-μm Spitzer Space Telescope images in order to calculate the typical SFRs of our Hα-emitting galaxies. These are compared to the observed Hα line fluxes in order to estimate the extinction at z = 0.84, and we find a significant increase in dust extinction for galaxies with higher SFRs. We demonstrate that the relationship between SFR and extinction found in the local Universe is also suitable for our high-redshift galaxies, and attribute the overall increase in the typical dust extinction for z = 0.84 galaxies to an increase in the average SFR, rather than to a change in dust properties at higher redshift. We calculate the UV extinction, and find a similar dependence on SFR to the Hα results, but no evidence for a 2175 Å UV bump in the dust attenuation law for high-redshift star-forming galaxies. By comparing Hα and UV indicators, we calculate the conversion between the dust attenuation of nebular and stellar radiation, γ, and show that γ = 0.50 ± 0.14. The extinction/SFR relationship is shown to be applicable to galaxies with a range of morphologies and bulge-to-disc ratios, to both merging and non-merging galaxies, and to galaxies within high- and low-density environments, implying that it is a fundamental property of star-forming regions. In order to allow future studies to easily correct for a SFR-dependent amount of dust extinction, we present an equation to predict the extinction of a galaxy, based solely on its observed Hα luminosity, and use this to recalculate the Hα luminosity function and SFR density at z = 0.84. © 2009 The Authors. Journal compilation © 2009 RAS.
More details from the publisher
More details

Pagination

  • First page First
  • Previous page Prev
  • …
  • Page 39
  • Page 40
  • Page 41
  • Page 42
  • Current page 43
  • Page 44
  • Page 45
  • Page 46
  • Page 47
  • …
  • Next page Next
  • Last page Last

Footer Menu

  • Contact us
  • Giving to the Dept of Physics
  • Work with us
  • Media

User account menu

  • Log in

Follow us

FIND US

Clarendon Laboratory,

Parks Road,

Oxford,

OX1 3PU

CONTACT US

Tel: +44(0)1865272200

University of Oxfrod logo Department Of Physics text logo
IOP Juno Champion logo Athena Swan Silver Award logo

© University of Oxford - Department of Physics

Cookies | Privacy policy | Accessibility statement

Built by: Versantus

  • Home
  • Research
  • Study
  • Engage
  • Our people
  • News & Comment
  • Events
  • Our facilities & services
  • About us
  • Giving to Physics
  • Current students
  • Staff intranet