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Miguel Angel Martin Contreras

Postdoc

Universidad de Valparaiso

Valparaiso, Chile

Líneas de Investigación


Fenomenología de Física Hadrónica, propiedades del Quark Gluon Plasma, matería hadrónica y nuclear en regímenes extremos usando la correspondencia AdS/CFT y modelos duales. Teoría de Cuerdas y QCD. Física no perturbativa. Filosofía de la Ciencia.

Educación

  •  Física, Universidad de los Andes. Colombia, 2017
  •  Astrofísica, Física de Partículas y Gravitación, Universität de Barcelona. España, 2011
  •  Física, Universidad de los Andes. Colombia, 2015
  •  Física, Universidad Nacional de Colombia. Colombia, 2009

Experiencia Académica

  •   Asistente graduado doctoral Full Time

    Universidad de los Andes

    Ciencias

    Bogotá, Colombia

    2011 - 2016

  •   Profesor de Catedra Part Time

    Universidad de los Andes

    Ciencias

    Bogotá, Colombia

    2017 - 2018

  •   Profesor de Planta Full Time

    Universidad Católica de Colombia

    Bogotá, Chile

    2017 - 2018

Experiencia Profesional

  •   Investigador postdoctoral Fondecyt Full Time

    Universidad de Valparaiso

    Valparaiso, Chile

    2018 - 2021

  •   Investigador postdoctoral Full Time

    Universidad de Valparaíso

    Valparaiso, Chile

    2021 - At present

Difusión y Transferencia


Participación en Pasantia 2019 de Educación Futuro con el proyecto "Calculando como llegar a Marte usando Wolfram Mathematica".



 

Article (16)

Drag force in the vacuum of confining gauge theories
Pion form factor from an AdS deformed background
Heavy quarkonia spectroscopy at zero and finite temperature in bottom-up AdS/QCD
Properties of protons in nuclear medium with AdS/QCD model with a quadratic modified dilaton
Proton and neutron form factors from deformed gravity/gauge duality
Different approach to decay constants in AdS/QCD models
Hadronic spectra from deformed AdS backgrounds
Light pseudoscalar and axial spectroscopy using AdS/QCD modified soft wall model
Nonlinear Regge trajectories with AdS/QCD
Proton structure functions from an AdS/QCD model with a deformed background
Melting of scalar hadrons in an AdS/QCD model modified by a thermal dilaton
Two-body light front wave functions from general AdS/QCD models
Light meson masses using AdS/QCD modified soft wall model
Decay constants in soft wall AdS/QCD revisited
Holographic model for heavy-vector-meson masses
Holographic picture of heavy vector meson melting

BookSection (4)

A generalization of ideas to get meson wave functions from holographic models
Holographic description of decay constants in AdS/QCD models: A summary and perspectives
Vector and baryon spectra via holography in an AdS deformed background
Capturing some medium effects in the dilaton to study hadrons in AdS/QCD models

ConferencePaper (3)

Holographic Bottom-Up Approach to Hadron Properties in Nuclear Medium
Light Meson Spectroscopy Using AdS/QCD Soft Wall Model with Extra UV Cutoff
AdS/QCD Modified Soft Wall Model and Light Meson Spectra

Proyecto (2)

DEVELOPMENT AND APPLICATIONS OF TECHNIQUES BASED ON HOLOGRAPHIC DUALITIES TO GET HADRON PROPERTIES
EXTENSIONS TO THE ADS/QCD MODELS AT FINITE DENSITY
6
Alfredo Vega

Profesor

Universidad de Valparaíso

Valparaiso, Chile

25
Miguel Martin

Postdoc

Universidad de Valparaiso

Valparaiso, Chile