We present detailed simulations of integral field spectroscopic observations of a supernova in a host galaxy at z ˜ 3, as observed by the HARMONI spectrograph on the Extremely Large Telescope, asssisted by laser tomographic adaptive optics. The goal of the simulations, using the HSIM simulation tool, is to determine whether HARMONI can discern the supernova Type from spectral features in the supernova spectrum. We find that in a 3 hour observation, covering the near-infrared H and K bands, at a spectral resolving power of ˜3000, and using the 20×20 mas spaxel scale, we can classify supernova Type Ia and their redshift robustly up to 80 days past maximum light (20 days in the supernova rest frame). We show that HARMONI will provide spectra a...
We forecast dark energy constraints that could be obtained from a new large sample of Type Ia supern...
A presentation of the methodology and results of observing a simulated redshift 1.44 galaxy as would...
Context. The light from distant supernovae (SNe ) can be magnified through gravitational lensing whe...
We present detailed simulations of integral field spectroscopic observations of a supernova in a hos...
The incoming generation of the 30-40 meter-class telescopes will enable resolving the stellar kinema...
We present HSIM: a dedicated pipeline for simulating observations with the HARMONI integral field sp...
International audienceWe present HSIM: a dedicated pipeline for simulating observations with the Hig...
We present the discovery of a Type Ia supernova (SN) at redshift z = 1.914 from the CANDELS multi-cy...
Context. The Subaru Deep Field (SDF) Supernova Survey discovered ten Type Ia supernovae (SNe Ia) in ...
We present a study into the capabilities of integrated and spatially resolved integral field spectro...
Context. The formation and evolution of galaxies appear linked to the growth of supermassive black h...
We present spectra for 14 high-redshift (0.17 < z < 0.83) supernovae, which were discovered by...
We present hsim: a dedicated pipeline for simulating observations with the High Angular Resolution M...
We use a new technique to extract the spectrum of a supernova from that of the contaminating backgro...
Context. The Subaru Deep Field (SDF) Supernova Survey discovered ten Type Ia supernovae (SNe Ia) in ...
We forecast dark energy constraints that could be obtained from a new large sample of Type Ia supern...
A presentation of the methodology and results of observing a simulated redshift 1.44 galaxy as would...
Context. The light from distant supernovae (SNe ) can be magnified through gravitational lensing whe...
We present detailed simulations of integral field spectroscopic observations of a supernova in a hos...
The incoming generation of the 30-40 meter-class telescopes will enable resolving the stellar kinema...
We present HSIM: a dedicated pipeline for simulating observations with the HARMONI integral field sp...
International audienceWe present HSIM: a dedicated pipeline for simulating observations with the Hig...
We present the discovery of a Type Ia supernova (SN) at redshift z = 1.914 from the CANDELS multi-cy...
Context. The Subaru Deep Field (SDF) Supernova Survey discovered ten Type Ia supernovae (SNe Ia) in ...
We present a study into the capabilities of integrated and spatially resolved integral field spectro...
Context. The formation and evolution of galaxies appear linked to the growth of supermassive black h...
We present spectra for 14 high-redshift (0.17 < z < 0.83) supernovae, which were discovered by...
We present hsim: a dedicated pipeline for simulating observations with the High Angular Resolution M...
We use a new technique to extract the spectrum of a supernova from that of the contaminating backgro...
Context. The Subaru Deep Field (SDF) Supernova Survey discovered ten Type Ia supernovae (SNe Ia) in ...
We forecast dark energy constraints that could be obtained from a new large sample of Type Ia supern...
A presentation of the methodology and results of observing a simulated redshift 1.44 galaxy as would...
Context. The light from distant supernovae (SNe ) can be magnified through gravitational lensing whe...