HSIM: a simulation pipeline for the HARMONI integral field spectrograph on the European ELT
arXiv:1508.04441 · doi:10.1093/mnras/stv1860
Abstract
We present HSIM: a dedicated pipeline for simulating observations with the HARMONI integral field spectrograph on the European Extremely Large Telescope. HSIM takes high spectral and spatial resolution input data-cubes, encoding physical descriptions of astrophysical sources, and generates mock observed data-cubes. The simulations incorporate detailed models of the sky, telescope and instrument to produce realistic mock data. Further, we employ a new method of incorporating the strongly wavelength dependent adaptive optics point spread functions. HSIM provides a step beyond traditional exposure time calculators and allows us to both predict the feasibility of a given observing programme with HARMONI, as well as perform instrument design trade-offs. In this paper we concentrate on quantitative measures of the feasibility of planned observations. We give a detailed description of HSIM and present two studies: estimates of point source sensitivities along with simulations of star-forming emission-line galaxies at . We show that HARMONI will provide exquisite resolved spectroscopy of these objects on sub-kpc scales, probing and deriving properties of individual star-forming regions.
13 pages, 11 figures, 3 tables, accepted for publication in MNRAS
References in corpus (9)
- Astropy: A Community Python Package for Astronomy
- Cosmic Star Formation History
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- The rapid formation a large rotating disk galaxy three billion years after the Big Bang
- An advanced scattered moonlight model for Cerro Paranal
- Resolved spectroscopy of gravitationally lensed galaxies: global dynamics and star-forming clumps on ~100pc scales
- The Dawes Review 1: Kinematic studies of star-forming galaxies across cosmic time
- Integral Field Spectroscopy of High-Redshift Star Forming Galaxies with Laser Guided Adaptive Optics: Evidence for Dispersion-Dominated Kinematics
- Coupling MOAO with Integral Field Spectroscopy: specifications for the VLT and the E-ELT
Cited by in corpus (17)
- Direct imaging and spectroscopy of exoplanets with the ELT/HARMONI high-contrast module
- Euclid: Superluminous supernovae in the Deep Survey
- Emission from the circumgalactic medium: from cosmological zoom-in simulations to multiwavelength observables
- The first Hubble diagram and cosmological constraints using superluminous supernova
- Behind the Mask: can HARMONI@ELT detect biosignatures in the reflected light of Proxima b?
- The SELGIFS data challenge: generating synthetic observations of CALIFA galaxies from hydrodynamical simulations
- Predicting the Observability of Population III Stars with ELT-HARMONI via the Helium emission line
- SimCADO - an instrument data simulator package for MICADO at the E-ELT
- Simulated stellar kinematics studies of high-redshift galaxies with the HARMONI Integral Field Spectrograph
- Spectral unmixing for exoplanet direct detection in hyperspectral data
- Detection and Implications of Laser-Induced Raman Scattering at Astronomical Observatories
- Simulating gas kinematic studies of high-redshift galaxies with the HARMONI Integral Field Spectrograph
- Signatures of Massive Black Hole Merger Host Galaxies from Cosmological Simulations II: Unique Stellar Kinematics in Integral Field Unit Spectroscopy
- ScopeSim: A flexible general purpose astronomical instrument data simulation framework in Python
- On the Viability of Determining Galaxy Properties from Observations I: Star Formation Rates and Kinematics
- Detecting Intermediate-Mass Black Holes out to 20 Mpc with ELT/HARMONI: The Case of FCC 119
- HARMONI view of the host galaxies of active galactic nuclei around cosmic noon: Resolved stellar morpho-kinematics and the M- relation