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Rotacijska krivulja Galaksije na podlagi opazovanj satelita Gaia
ID Pirc Jevšenak, Vesna (Author), ID Zwitter, Tomaž (Mentor) More about this mentor... This link opens in a new window

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Abstract
Katalog zvezd satelita Gaia vsebuje astrometrične podatke o tridimenzionalnem položaju in dvodimenzionalni prečni hitrosti glede na Sonce ter podatke o radialni hitrosti za 33 milijonov zvezd. Cilj magistrske naloge je uporabiti to neverjetno količino kvalitetnih meritev za določitev rotacijske krivulje diska naše Galaksije. Z uporabo astrometričnih, fotometričnih in spektroskopskih meritev ter z naslanjanjem na analitični model Galaksije iz literature poskušamo čim bolj točno izračunati krožilno hitrost zvezd v disku na različnih oddaljenostih od središča Galaksije, vse od radija 0 kpc do 24 kpc. Pri tem analiziramo prostorsko porazdelitev rdečih orjakinj ter zvezd glavne veje in spoznamo značilnosti porazdelitve hitrosti celotnega vzorca. Med analizo opazimo ostanke zadnjega velikega združenja naše Galaksije s satelitsko galaksijo, v rotacijski krivulji pa zaznamo vpliv bližnjega spiralnega rokava.

Language:Slovenian
Keywords:Gaia, rotacijska krivulja, zvezde, Galaksija, naša Galaksija, Rimska cesta
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FMF - Faculty of Mathematics and Physics
Year:2025
PID:20.500.12556/RUL-173231 This link opens in a new window
COBISS.SI-ID:249440259 This link opens in a new window
Publication date in RUL:14.09.2025
Views:438
Downloads:154
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Secondary language

Language:English
Title:Rotation curve of our Galaxy based on the Gaia satellite catalogue
Abstract:
The latest catalogue of the satellite Gaia contains astrometric data on the three-dimensional positions and two-dimensional transverse velocities, as well as radial velocities of 33 million stars. The aim of this master’s thesis is to use this incredible amount of high-quality measurements to determine the rotation curve of our Galaxy’s disk. By using astrometric, photometric, and spectroscopic data, and relying on an analytical model of the Galaxy from the literature, we work on calculating the circular velocity of stars in the disk as accurately as possible at various distances from the Galactic centre, ranging from a radius of 0 kpc to 24 kpc. Moreover, we analyse the spatial distribution of red giants and main sequence stars and explore the characteristics of the velocity distribution of the entire sample. During the analysis, we identify remnants of the Milky Way’s last major merger with a satellite galaxy, and detect the influence of a nearby spiral arm in the rotation curve.

Keywords:Gaia, rotation curve, stars, Milky Way, Galaxy, our Galaxy

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