<p> </p> <p>We present an application of a multivariate analyses technique on data returned by the Planetary Fourier Spectrometer (PFS) instrument on board the ESA's Mars Express (MEX) spacecraft in order to separate the atmospheric contribution from the observed radiation. We observe that Thermal/Far Infrared spectra returned from Mars, covering almost a whole martian year, can be represented by a linear model using a limited set of end-member spectra. We identify the end-members as the suspended mineral dust and water ice clouds, but no surface signature was found. We improve previous studies performed with data from the Thermal Emission Spectrometer (TES) thanks to the higher spectral resolution of PFS. This allows for distinguishing nar...
Infrared spectra returned by the Thermal Emission Spectrometer (TES) are well suited for retrieval o...
This work presents a review of the observations acquired by the planetary Fourier spectrometer (PFS)...
FTIR spectrometry is a powerful tool to investigate the atmosphere and surface composition of planet...
We present an application of a multivariate analyses technique on data returned by the Planetary Fou...
The Martian surface is mainly composed by an altered particulate mineral regolith, ranging from micr...
The Planetary Fourier Spectrometer (PFS) is a double-pendulum interferometer designed to fly on the ...
The Planetary Fourier Spectrometer (PFS) is a double-pendulum interferometer designed to fly on the ...
Key knowledge about planetary composition can be recovered from the study of thermal infrared spectr...
We introduce two new techniques in analyzing martian spectrally resolved radiance data obtained by t...
The thermal emission spectra have provided many useful insights about the Martian atmosphere and sur...
A Planetary Fourier Spectrometer (PFS) onboard a future Mars mission will record a big amount of dat...
A method for separating the spectral signatures of the Martian surface and atmosphere was developed ...
We use thermal-infrared spectra returned by the Mars Express Planetary Fourier Spectrometer (PFS-MEx...
We used thermal-infrared spectra returned by the Mars Express Planetary Fourier Spectrometer (PFSME...
We used thermal-infrared spectra returned by the Mars Express Planetary Fourier Spectrometer (PFS/ME...
Infrared spectra returned by the Thermal Emission Spectrometer (TES) are well suited for retrieval o...
This work presents a review of the observations acquired by the planetary Fourier spectrometer (PFS)...
FTIR spectrometry is a powerful tool to investigate the atmosphere and surface composition of planet...
We present an application of a multivariate analyses technique on data returned by the Planetary Fou...
The Martian surface is mainly composed by an altered particulate mineral regolith, ranging from micr...
The Planetary Fourier Spectrometer (PFS) is a double-pendulum interferometer designed to fly on the ...
The Planetary Fourier Spectrometer (PFS) is a double-pendulum interferometer designed to fly on the ...
Key knowledge about planetary composition can be recovered from the study of thermal infrared spectr...
We introduce two new techniques in analyzing martian spectrally resolved radiance data obtained by t...
The thermal emission spectra have provided many useful insights about the Martian atmosphere and sur...
A Planetary Fourier Spectrometer (PFS) onboard a future Mars mission will record a big amount of dat...
A method for separating the spectral signatures of the Martian surface and atmosphere was developed ...
We use thermal-infrared spectra returned by the Mars Express Planetary Fourier Spectrometer (PFS-MEx...
We used thermal-infrared spectra returned by the Mars Express Planetary Fourier Spectrometer (PFSME...
We used thermal-infrared spectra returned by the Mars Express Planetary Fourier Spectrometer (PFS/ME...
Infrared spectra returned by the Thermal Emission Spectrometer (TES) are well suited for retrieval o...
This work presents a review of the observations acquired by the planetary Fourier spectrometer (PFS)...
FTIR spectrometry is a powerful tool to investigate the atmosphere and surface composition of planet...