Calendar

Oct
25
Thu
Riunione con FSE Di Trapani, Carotenuto, Coniglio
Oct 25 @ 11:00 – 12:00
Oct
29
Mon
Presentazione D. Randazzo biblioteca Oapa a studenti I anno restauro cartaceo
Oct 29 @ 15:00
Oct
30
Tue
Riunione con le RSU
Oct 30 @ 11:00 – 12:00
Nov
7
Wed
A novel method for component separation for extended sources in X-ray astronomy. Fabio Acero (CEA Saclay)
Nov 7 @ 12:00 – 13:00
Supernova remnants (and extended sources in general), are composed of a variety of components from different origins such as the shocked medium, the shocked ejecta or the accelerated electrons. Each component has a spectral signature (bremsstrahlung, emission lines, synchrotron, etc) and a spatial distribution that are projected along the line of sight and the perceived signal is a combination of these components. Spectro-imaging instruments  such as Chandra or XMM-Newton provide a 2D-1D view (X, Y, E) of extended sources. This is both an opportunity and a non-trivial challenge to disentangle the spatial distribution of the spectral components at stake. Whether it is to map the spatial distribution of heavy elements or the plasma properties, current analysis techniques (e.g. Voronoi tiling) treat each region independently and the disentangling process only relies on the spectral signature of the components.
With the current deep archival observations and in preparation for the next generation of telescopes, we need to operate a paradigm shift in the way we analyse X-ray data by drawing from the most advanced signal processing techniques to capture the wealth of information contained in those observations.
Here we propose to apply to X-ray astronomy blind source separation algorithms developed in cosmology to separate the CMB map from the foregrounds in the Planck data. This method exploits both the spectral and spatial signatures of the components yielding more discriminative power to disentangle the different physical components. We will present benchmarks of the methods using toy models and show preliminary results on the Chandra CasA dataset.
Nov
26
Mon
Studenti liceo scientifico “G. Galilei”
Nov 26 @ 10:30 – 13:00
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Nov
28
Wed
La D&D nella comunicazione dell’INAF, Caterina Boccato (INAF)
Nov 28 @ 11:30 – 13:00

In questo breve incontro, Caterina Boccato nelle veci del responsabile nazionale della didattica e divulgazione, Stefano Sandrelli, presenta la Struttura per la Comunicazione della Presidenza con particolare riguardo alla didattica e alla divulgazione (D&D).
Il seminario sara` un’importante occasione di incontro per illustrare ai ricercatori INAF in che modo questa struttura può essere loro utile e che cosa la struttura si aspetta da parte dei ricercatori. A tal fine ne racconterà la strategia e gli strumenti adottati con una panoramica di quanto è stato fatto nel 2017 e nel 2018, mettendo in evidenza aspetti, efficaci e non, delle attività svolte. Per finire, uno sguardo al programma futuro.

Dec
13
Thu
Evento DonnaDonna Onlus
Dec 13 all-day
Dec
14
Fri
Riunione Direttore con ricercatori
Dec 14 @ 11:30 – 13:00
The role of cosmic rays on physical and chemical processes of the interstellar medium, Marco Padovani (INAF-Osservatorio Astrofisico di Arcetri)
Dec 14 @ 15:00 – 16:30

The study of the interaction of cosmic rays with the interstellar matter is a multi-disciplinary investigation that involves the analysis of several physical and chemical processes: ionisation of atomic and molecular hydrogen, energy loss by elastic and inelastic collisions, energy deposition by primary and secondary electrons, gamma-ray production by pion decay, the production of light elements by spallation reactions, and much more. Cosmic-ray ionisation activates the rich chemistry of dense molecular clouds and determines the degree of coupling of the gas with the local magnetic field, which in turn controls the collapse timescale and the star-formation efficiency of a molecular cloud. In recent years a wealth of observations from the ground and from space has provided information and constraints that still need to be incorporated in a consistent global theoretical framework. My goal is to use the results of chemical models and state-of-the-art numerical simulations supplemented by dedicated observations to provide a unifying interpretation of the data with a model of cosmic-ray propagation specifically developed to make predictions that can be tested against the observations. Finally, I will talk about my most recent study: a mechanism able to accelerate local thermal particles in protostars that can be used to explain the high ionisation rate as well as the synchrotron emission observed towards protostellar sources.

Dec
18
Tue
Consiglio di Struttura
Dec 18 @ 11:00 – 13:00