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Felipe Andrés Isaule Rodríguez

Investigador Postdoctoral

Pontificia Universidad Católica de Chile

Santiago, Chile

Líneas de Investigación


Ultracold atomic gases, quantum many-body theory, atomtronics, condensation and superfluidity, polarons and impurities, renormalization group, tensor networks.

Educación

  •  BSc Physics, UNIVERSIDAD DE CHILE. Chile, 2013
  •  MSc Physics, UNIVERSIDAD DE CHILE. Chile, 2015
  •  PhD Theoretical Physics, UNIVERSITY OF MANCHESTER. Reino Unido, 2019

Experiencia Académica

  •   Postdoctoral Researcher Full Time

    UNIVERSIDAD DE BARCELONA

    Facultat de Física

    Barcelona, España

    2020 - 2021

  •   Research Associate Full Time

    UNIVERSITY OF GLASGOW

    School of Physics and Astronomy

    Glasgow, Reino Unido

    2021 - 2023

  •   Investigador Postdoctoral Fondecyt Full Time

    PONTIFICIA UNIVERSIDAD CATOLICA DE CHILE

    Facultad de Física

    Santiago, Chile

    2023 - A la fecha

  •   VISITING RESEARCHER Full Time

    OKINAWA INSTITUTE OF SCIENCE AND TECHNOLOGY

    Onna, Japón

    2025 - 2025


 

Article (19)

Counterflow of Lattice Polarons in Harmonically Confined Optical Lattices
Dipolar magnetostirring protocol for three-well atomtronic circuits
Few-body bound states of bosonic mixtures in two-dimensional optical lattices
Bound impurities in a one-dimensional Bose lattice gas: low-energy properties and quench-induced dynamics
Few particles with an impurity in a one-dimensional harmonic trap
Functional renormalisation group approach to the finite-temperature Bose polaron
Resonance detuning mechanism for directing particle flow in ring lattices
Rotational properties of two interacting cold polar molecules: Linear, symmetric, and asymmetric tops
Stable collective charging of ultracold-atom quantum batteries
Mobile impurities interacting with a few one-dimensional lattice bosons
Direct diagonalization method for a few particles trapped in harmonic potentials
Quantum phases of bosonic chiral molecules in helicity lattices
Weakly-Interacting Bose-Bose Mixtures from the Functional Renormalisation Group
Functional renormalization for repulsive Bose-Bose mixtures at zero temperature
Renormalization-group study of Bose polarons
Thermodynamics of Bose gases from functional renormalization with a hydrodynamic low-energy effective action
Application of the functional renormalization group to Bose gases: From linear to hydrodynamic fluctuations
Di-neutrons in neutron matter within a Brueckner-Hartree-Fock approach
Di-nucleon structures in homogeneous nuclear matter based on two- and three-nucleon interactions

ConferencePaper (1)

Structure and cooling of neutron stars: Nuclear pairing and superfluid effects
1
Hugo Arellano

Profesor

Física

Universidad de Chile - FCFM

Santiago, Chile

20
Felipe Isaule

Investigador Postdoctoral

Instítuto de Física

Pontificia Universidad Católica de Chile

Santiago, Chile