Calendar

Ott
21
lun
Riunione della Commissione di Concorso per Tecnologi INAF (ST-3 Tecnico-Scientifico)
Ott 21–Ott 25 giorno intero
Ott
25
ven
Selezione a sorteggio operatori economici gara pulizie
Ott 25@10:00–11:15
Seminario: ripetizione Tesi di Dottorato di A. Garrido, Aula ore 11.30
Ott 25@11:30–13:00

Speaker: A. Garrido (UNIPA)

Titolo: Analysis of exoplanetary atmospheres.

Abstract:

The seminar summarizes the work of my last PhD year.
During the talk I will explain how to obtain an atmospheric transmission spectrum of a transit exoplanet: Kelt-9b. The analyzes carried out will be explained and finally I will show the Balmer lines of the exoplanet’s atmosphere. The seminar concludes with the derivation of the exoplanet’s temperature by means of direct measurements made thanks to the development of tomography images.
Ott
28
lun
Riunione con RTP Monaco @ Museo della Specola
Ott 28@11:00–13:30
Ott
29
mar
Seminario: D. Modirrousta Galian (INAF), Aula ore 15:00
Ott 29@15:00–16:30

Speaker:  Darius Modirrousta Galian

Titolo: Theoretical exoplanetology

Seminario: Why does 55 Cancri e have a H/H 2 -rich atmosphere? Why is there a bimodal distribution of exoplanet radii with one peak at ~ 1.3R ⨁ , the other and ~ 2.4R ⨁ , and the minima at ~ 1.8R ⨁ .
Why do some airless magma ocean super-Earths have albedos close to ~ 50% when earth-based magmas have measured albedos of ~ 10%? Conversely, why are some hot Jupiters so dark with albedos of ~ 1% or below? New data from astronomical measurements shows that
the universe is far more complex and interesting than what traditional literature predicted. Understanding these bodies and phenomena is not a trivial task, but by coupling different scientific fields with observational data it may be possible to shed some light on these systems.

Nov
5
mar
Riunione Direttore con LSU
Nov 5@11:00–12:30
Nov
6
mer
Seminario: Ruggero Biondo (UNIPA) ore 11.30
Nov 6@11:30–13:00

Speaker:  Ruggero Biondo

Titolo: Data-driven Numerical Reconstruction of the Interplanetary Parker Spiral

Abstract: Over the last decade the science community, governments and private partners have shown a growing interest in the topic of Space Weather: a broad discipline aimed to the forecasting of potential threats to space and ground-based systems and operations. The ability of the state-of-art codes to reconstruct the stationary conditions of the interplanetary plasma is still limited, as shown by the comparisons between model predictions and in-situ measurements acquired by various spacecrafts. Therefore, it is necessary to develop leaner codes and to improve the agreement between forecasts and observed data on the other. The aim of this work is to lighten the procedures involved in determining the inner heliospheric boundary and to bind the numerical simulations to direct measurements of the parameters of the interplanetary plasma. To do this, the ambient plasma parameters of the inner heliosphere are reconstructed, using the 1 AU data provided by the Solar Physics Group in INAF-Turin Astrophysical Observatory from different spacecrafts located in the lagrangian point L1 such as DSCOVR and GGS Wind, by going backwards to 0.1 AU following the spiraling arms of the Interplanetary Parker Spiral. The back-reconstructed plasma parameter at 0.1 AU are thus employed as inner boundary conditions for the solar wind expansion up to 1 AU based on a MHD simulation. This innovative approach provides a new method to reconstruct the conditions of the interplanetary plasma from the Sun to 1 AU and beyond

Nov
11
lun
Riunione astrokids
Nov 11@8:00–12:23
Nov
13
mer
Collaborazione con Francesca Mangano IASF per confronto quesiti Nuovo disciplinare Missioni
Nov 13@9:30–14:00
Seminario: Giuseppe Morello (INAF) Aula ore 15.00
Nov 13@15:00–16:30

Speaker: Giuseppe Morello

Titolo: Towards high-precision modeling of star+exoplanet multiwavelength light-curves

Abstract: I will present new tools and methodologies purposely developed for modeling observations of transiting exoplanets and eclipsing binaries with precision down to <10 parts per million (ppm).

ExoTETHyS is a python package that aims to collect the functions needed to model the high-precision spectrophotometric observations obtained with JWST and ARIEL (not only). The current version includes a user-friendly stellar limb-darkening calculator that outperforms existing codes by one order of magnitude in terms of light-curve model accuracy. I will introduce to the current use of ExoTETHyS and discuss the planned developments.

I will also show the results from the consistent reanalyses of Spitzer and Hubble data with bayesian approaches and improved data detrending techniques.