Ultraviolet astronomy is an important tool for the study of the interplanetary medium, comets, planetary upper atmospheres, and the near space environments planets and satellites. In addition to brightness distributions, emission line profiles offer insight into winds, atmospheric escape, energy balance, currents, and plasma properties. Unfortunately, the faintness of many target emissions and the volume limitations of small spacecraft and remote probes limit the opportunities for incorporating a high spectral resolution capability. An emerging technique to address this uses an all-reflective form of the spatial heterodyne spectrometer (SHS) that combines very high (R>105) spectral resolution and large étendue in a package small enough t...
A Spatial Heterodyne Spectrometer with broad spectral coverage across the VUV - UV region and with a...
The UV spectral range is a crucial window to investigate a large area of phenomena for the objects o...
International audienceThe UV spectral range is a crucial window to investigate a large area of pheno...
Ultraviolet astronomy is an important tool for the study of the interplanetary medium, comets, plane...
A Spatial Heterodyne Spectrometer (SHS) instrument combines high etendue and high spectral resolutio...
Spatial heterodyne spectrographs combine high spectral resolution with large étendue in a compact in...
All reflective spatial heterodyne spectrometers (SHS) are a compact self-scanning Fourier transform ...
Spatial Heterodyne Spectroscopy is a novel approach to Fourier transform interferometry and serves a...
We describe the design, development, and performance of a narrowband, all-reflective, unaliased spat...
This paper describes the use of a newly developed Spatial Heterodyne Spectrometer (SHS) designed to ...
Spatial Heterodyne Spectroscopy (SHS) stands poised to play a significant role in astrophysics from ...
This paper describes the characteristics and performance of a novel spatial heterodyne spectrometer ...
A highly miniaturized limb sounder for the observation of faint emissions in the atmosphere is prese...
A Spatial Heterodyne Spectrometer with broad spectral coverage across the VUV - UV region and with a...
The UV spectral range is a crucial window to investigate a large area of phenomena for the objects o...
International audienceThe UV spectral range is a crucial window to investigate a large area of pheno...
Ultraviolet astronomy is an important tool for the study of the interplanetary medium, comets, plane...
A Spatial Heterodyne Spectrometer (SHS) instrument combines high etendue and high spectral resolutio...
Spatial heterodyne spectrographs combine high spectral resolution with large étendue in a compact in...
All reflective spatial heterodyne spectrometers (SHS) are a compact self-scanning Fourier transform ...
Spatial Heterodyne Spectroscopy is a novel approach to Fourier transform interferometry and serves a...
We describe the design, development, and performance of a narrowband, all-reflective, unaliased spat...
This paper describes the use of a newly developed Spatial Heterodyne Spectrometer (SHS) designed to ...
Spatial Heterodyne Spectroscopy (SHS) stands poised to play a significant role in astrophysics from ...
This paper describes the characteristics and performance of a novel spatial heterodyne spectrometer ...
A highly miniaturized limb sounder for the observation of faint emissions in the atmosphere is prese...
A Spatial Heterodyne Spectrometer with broad spectral coverage across the VUV - UV region and with a...
The UV spectral range is a crucial window to investigate a large area of phenomena for the objects o...
International audienceThe UV spectral range is a crucial window to investigate a large area of pheno...