10 research outputs found
ANDES, the high resolution spectrograph for the ELT: science goals, project overview and future developments
The first generation of ELT instruments includes an optical-infrared
high-resolution spectrograph, indicated as ELT-HIRES and recently christened
ANDES (ArmazoNes high Dispersion Echelle Spectrograph). ANDES consists of three
fibre-fed spectrographs ([U]BV, RIZ, YJH) providing a spectral resolution of
100,000 with a minimum simultaneous wavelength coverage of 0.4-1.8 m
with the goal of extending it to 0.35-2.4 m with the addition of a U arm
to the BV spectrograph and a separate K band spectrograph. It operates both in
seeing- and diffraction-limited conditions and the fibre feeding allows
several, interchangeable observing modes including a single conjugated adaptive
optics module and a small diffraction-limited integral field unit in the NIR.
Modularity and fibre-feeding allow ANDES to be placed partly on the ELT Nasmyth
platform and partly in the Coud\'e room. ANDES has a wide range of
groundbreaking science cases spanning nearly all areas of research in
astrophysics and even fundamental physics. Among the top science cases, there
are the detection of biosignatures from exoplanet atmospheres, finding the
fingerprints of the first generation of stars, tests on the stability of
Nature's fundamental couplings, and the direct detection of the cosmic
acceleration. The ANDES project is carried forward by a large international
consortium, composed of 35 Institutes from 13 countries, forming a team of
almost 300 scientists and engineers which include the majority of the
scientific and technical expertise in the field that can be found in ESO member
states.Comment: SPIE astronomical telescope and instrumentation 2024, in pres
ANDES, the high resolution spectrograph for the ELT: science goals, project overview, and future developments
Quantitative phase imaging in flows with high resolution holographic diffraction grating
International audienceThis paper proposes quantitative phase imaging by using a high resolution holographic grating for generating a four-wave shearing interferogram. The high-resolution holographic grating is designed in a " kite " configuration so as to avoid parasitic mixing of diffraction orders. The selection of six diffraction orders in the Fourier spectrum of the interferogram allows reconstructing phase gradients along specific directions. The spectral analysis yields the useful parameters of the reconstruction process. The derivative axes are exactly determined whatever the experimental configurations of the holographic grating. The integration of the derivative yields the phase and the optical thickness. Demonstration of the proposed approach is carried out for the case of the analysis of the supersonic flow of a small vertical jet, 5.56mm in diameter. The experimental results compared with those obtained with digital holography exhibit a very good agreement
Digital Mach-Zehnder holographic interferometer using pulsed laser for analyzing large flow fields
Inpainting to remove phase dislocations in digital holographic metrology
International audienc
ANDES, the high resolution spectrograph for the ELT:science goals, project overview and future developments
The first generation of ELT instruments includes an optical-infrared high resolution spectrograph, indicated as ELT-HIRES and recently christened ANDES (ArmazoNes high Dispersion Echelle Spectrograph).ANDES consists of three fibre-fed spectrographs ([U]BV, RIZ, YJH) providing a spectral resolution of ∼100,000 with a minimum simultaneous wavelength coverage of 0.4-1.8 µm with the goal of extending it to 0.35-2.4 µm with the addition of an U arm to the BV spectrograph and a separate K band spectrograph.It operates both in seeing- and diffraction-limited conditions and the fibre-feeding allows several, interchangeable observing modes including a single conjugated adaptive optics module and a small diffraction-limited integral field unit in the NIR.Modularity and fibre-feeding allows ANDES to be placed partly on the ELT Nasmyth platform and partly in the Coudé room.ANDES has a wide range of groundbreaking science cases spanning nearly all areas of research in astrophysics and even fundamental physics.Among the top science cases there are the detection of biosignatures from exoplanet atmospheres, finding the fingerprints of the first generation of stars, tests on the stability of Nature's fundamental couplings, and the direct detection of the cosmic acceleration.The ANDES project is carried forward by a large international consortium, composed of 35 Institutes from 13 countries, forming a team of almost 300 scientists and engineers which include the majority of the scientific and technical expertise in the field that can be found in ESO member states.</p
ANDES, the high resolution spectrograph for the ELT: science goals, project overview, and future developments
ANDES, the high resolution spectrograph for the ELT: science goals, project overview, and future developments
International audienc
ANDES, the high resolution spectrograph for the ELT: science goals, project overview, and future developments
The first generation of ELT instruments includes an optical-infrared high resolution spectrograph, indicated as ELT-HIRES and recently christened ANDES (ArmazoNes high Dispersion Echelle Spectrograph).ANDES consists of three fibre-fed spectrographs ([U]BV, RIZ, YJH) providing a spectral resolution of ∼100,000 with a minimum simultaneous wavelength coverage of 0.4-1.8 µm with the goal of extending it to 0.35-2.4 µm with the addition of an U arm to the BV spectrograph and a separate K band spectrograph.It operates both in seeing- and diffraction-limited conditions and the fibre-feeding allows several, interchangeable observing modes including a single conjugated adaptive optics module and a small diffraction-limited integral field unit in the NIR.Modularity and fibre-feeding allows ANDES to be placed partly on the ELT Nasmyth platform and partly in the Coudé room.ANDES has a wide range of groundbreaking science cases spanning nearly all areas of research in astrophysics and even fundamental physics.Among the top science cases there are the detection of biosignatures from exoplanet atmospheres, finding the fingerprints of the first generation of stars, tests on the stability of Nature's fundamental couplings, and the direct detection of the cosmic acceleration.The ANDES project is carried forward by a large international consortium, composed of 35 Institutes from 13 countries, forming a team of almost 300 scientists and engineers which include the majority of the scientific and technical expertise in the field that can be found in ESO member states.</p
