• español
  • English
  • français
  • Deutsch
  • português (Brasil)
  • italiano
    • español
    • English
    • français
    • Deutsch
    • português (Brasil)
    • italiano
    • español
    • English
    • français
    • Deutsch
    • português (Brasil)
    • italiano
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Parcourir

    Tout UVaDOCCommunautésPar date de publicationAuteursSujetsTitres

    Mon compte

    Ouvrir une session

    Statistiques

    Statistiques d'usage de visualisation

    Compartir

    Voir le document 
    •   Accueil de UVaDOC
    • PROJET DE FIN D'ÉTUDES
    • Trabajos Fin de Grado UVa
    • Voir le document
    •   Accueil de UVaDOC
    • PROJET DE FIN D'ÉTUDES
    • Trabajos Fin de Grado UVa
    • Voir le document
    • español
    • English
    • français
    • Deutsch
    • português (Brasil)
    • italiano

    Exportar

    RISMendeleyRefworksZotero
    • edm
    • marc
    • xoai
    • qdc
    • ore
    • ese
    • dim
    • uketd_dc
    • oai_dc
    • etdms
    • rdf
    • mods
    • mets
    • didl
    • premis

    Citas

    Por favor, use este identificador para citar o enlazar este ítem:https://uvadoc.uva.es/handle/10324/63341

    Título
    Emisión y propagación de ondas gravitacionales en fusiones de sistemas binarios
    Autor
    Revilla Peña, Alberto
    Director o Tutor
    Saez Gómez, DiegoAutoridad UVA
    Editor
    Universidad de Valladolid. Facultad de CienciasAutoridad UVA
    Año del Documento
    2022
    Titulación
    Grado en Física
    Résumé
    We analyze the phenomena of emission of Gravitational Waves focusing on a binary system of compact objects. This cutting edge topic has experienced a lot of advances on the recent years. The first observation of Gravitational Waves on 2015 opened a window to obtain new information from our universe. Multi-messenger astronomy let us receive signals from electromagnetic radiation, neutrinos, cosmic rays and now Gravitational Waves are added to the list. But, building accurate detectors is not enough. To separate the signal of Gravitational Waves from the noise it is necessary to rely on a good prediction of the wavefront. This is not an easy task due to the non-linearity of General Relativity. We will focus on the first phase of the collision of compact objects where the objects follow an inspiral orbit. As a first approximation, we use the multipole expansion on the typical velocities of the source, working on linearized theory. We compute the wavefront and the power carried by the Gravitational Waves for a binary system taking only the leading term on the multipole expansion (mass quadrupole). The next step would be to apply the Post-Newtonian formalism, which is valid for self-gravitating systems in the region near the source. This is an expansion on low velocities and weak gravitational field that takes into account the non-linearity of General Relativity. We analyze how this expansion works and compute the general expression of the metric tensor components up to 1PN order in terms of static potentials. Finally, we provide some information about the other phases of black holes mergers and about the signal emitted.
    Palabras Clave
    Ondas gravitacionales
    Sistemas binarios
    Relatividad general
    Formalismo post-newtoniano
    Teoría perturbativa
    Departamento
    Departamento de Física Teórica, Atómica y Óptica
    Idioma
    spa
    URI
    https://uvadoc.uva.es/handle/10324/63341
    Derechos
    openAccess
    Aparece en las colecciones
    • Trabajos Fin de Grado UVa [30857]
    Afficher la notice complète
    Fichier(s) constituant ce document
    Nombre:
    TFG-G6684.pdf
    Tamaño:
    1.087Mo
    Formato:
    Adobe PDF
    Thumbnail
    Voir/Ouvrir
    Attribution-NonCommercial-NoDerivatives 4.0 InternacionalExcepté là où spécifié autrement, la license de ce document est décrite en tant que Attribution-NonCommercial-NoDerivatives 4.0 Internacional

    Universidad de Valladolid

    Powered by MIT's. DSpace software, Version 5.10