Lines in the mid- to far-infrared wavelength range, less affected by dust extinction than optical lines, are ideally suited to study the physical processes taking place in the dust-hidden regions in galaxies, where heavily obscured star formation and accretion onto supermassive black-holes at their nuclei take place. These tools are fundamental for the study of local galaxies, but become of paramount importance to probe galaxies at the “Cosmic Noon”, at redshift z1-3, when the peak of star formation activity has taken place and most of the baryonic mass in galaxies has been assembled. One of the main goals of this Thesis is to provide reliable calibrations of mid- to far-IR ionic fine structure lines, H2 molecular lines and PAH (polycyclic ...
IR spectroscopy in the range 12–230μm with the SPace IR telescope for Cosmology and Astrophysics (S...
The mid-infrared range contains many spectral features associated with large molecules and dust grai...
The mid-infrared range contains many spectral features associated with large molecules and dust grai...
Rest-frame mid- to far-infrared spectroscopy is a powerful tool to study how galaxies formed and evo...
Context. Mid- to far-infrared (IR) lines are suitable in the study of dust-obscured regions in galax...
IR spectroscopy in the range 12-230 mu m with the SPace IR telescope for Cosmology and Astrophysics ...
AbstractIR spectroscopy in the range 12–230 μm with the SPace IR telescope for Cosmology and Astroph...
Context. Mid- to far-infrared (IR) lines are suitable in the study of dust-obscured regions in galax...
We use the SPace Infrared telescope for Cosmology and Astrophysics (SPICA) project as a template to ...
To study the dust obscured phase of the galaxy evolution during the peak of the Star Formation Rate ...
The evolution of galaxies at Cosmic Noon (redshift 1<3) passed through a dust-obscured phase, dur...
Rest-frame mid- to far-infrared spectroscopy is a powerful tool to study how galaxies formed and evo...
IR spectroscopy in the range 12-230 μm with the SPace IR telescope for Cosmology and Astrophysics (S...
IR spectroscopy in the range 12-230 μm with the SPace IR telescope for Cosmology and Astrophysics (S...
IR spectroscopy in the range 12–230μm with the SPace IR telescope for Cosmology and Astrophysics (S...
The mid-infrared range contains many spectral features associated with large molecules and dust grai...
The mid-infrared range contains many spectral features associated with large molecules and dust grai...
Rest-frame mid- to far-infrared spectroscopy is a powerful tool to study how galaxies formed and evo...
Context. Mid- to far-infrared (IR) lines are suitable in the study of dust-obscured regions in galax...
IR spectroscopy in the range 12-230 mu m with the SPace IR telescope for Cosmology and Astrophysics ...
AbstractIR spectroscopy in the range 12–230 μm with the SPace IR telescope for Cosmology and Astroph...
Context. Mid- to far-infrared (IR) lines are suitable in the study of dust-obscured regions in galax...
We use the SPace Infrared telescope for Cosmology and Astrophysics (SPICA) project as a template to ...
To study the dust obscured phase of the galaxy evolution during the peak of the Star Formation Rate ...
The evolution of galaxies at Cosmic Noon (redshift 1<3) passed through a dust-obscured phase, dur...
Rest-frame mid- to far-infrared spectroscopy is a powerful tool to study how galaxies formed and evo...
IR spectroscopy in the range 12-230 μm with the SPace IR telescope for Cosmology and Astrophysics (S...
IR spectroscopy in the range 12-230 μm with the SPace IR telescope for Cosmology and Astrophysics (S...
IR spectroscopy in the range 12–230μm with the SPace IR telescope for Cosmology and Astrophysics (S...
The mid-infrared range contains many spectral features associated with large molecules and dust grai...
The mid-infrared range contains many spectral features associated with large molecules and dust grai...