curriculum vitæ
General Information
Vital record | Antoine Boulet French citizen, married, born on March 30, 1993 [30 y/o] in Argentan, France |
Address | ISMANS CESI room 51 (1th floor) 44 avenue Frédéric Auguste Bartholdi 72000 Le Mans, France |
Contact | by email at antoine.boulet@protonmail.com by phone (or WhatsApp) at (+33) 6 26 97 41 96 |
Languages | French (native), English (fluent) |
Education
-
2019 Ph. D. in theoretical physics
Paris‑Saclay University • IPN Orsay
Orsay, France -
2016 M. Sc. in fundamental concepts of physics
Paris‑Saclay University • ENS Paris
Paris, France -
2014 B. Sc. in fundamental physics
Paris‑Sud University • UFR science Orsay
Orsay, France -
2011 – 2013 CPGE MPSI/MP
lycée Victor Grignard
Cherbourg-Octeville, France
Experience
-
2022 – now Higher education teacher
ISMANS CESI engineering school
Le Mans, France- head teacher for the integrated preparatory cycle (undergraduate) [from september 2022 to august 2023]
- teaching at undergraduate and graduate level
- physics
- chemistry
- mathematics
- programming
-
2021 – 2022 Research Associate
Warsaw University of Technology • Faculty of Physics • nuclear theory group
Warsaw, Poland- development and implementation of an extended SLDA functional
- numerical simulation of dissipation processes in superfluid vortices systems, quantum turbulence, Higgs modes, and quantum quenches
-
2019 – 2020 Research Associate
Michigan State University • FRIB/NSCL • nuclear theory group
East Lansing, MI USA- development of microscopically‑motivated DFT using ab initio theories and their implementation for large‑scale calculations of nuclei
-
2017 – 2019 Graduate Teaching Assistant
Paris‑Saclay University • IUT Orsay
Orsay, France- Directed Studies
- electromagnetism
- metrology, quality, statistics
- Practical Works
- metrology, quality, statistics
- chains of measurement, control, tests
- Directed Studies
-
2016 – 2019 Ph. D. Student
Paris‑Sud University • IPN Orsay • nuclear theory group
Orsay, France- development of DFT for Fermi systems with large s‑wave scattering length and application to atomic and nuclear physics
Open Source Projects
-
2021 – 2023 W-SLDA Toolkit
- Self-consistent solver of mathematical problems which have structure formally equivalent to Bogoliubov-de Gennes equations.
Academic Interests
-
Quantum many-body problem
- ultracold atomic systems
- condensed matter and complex systems
- phase transitions
- spontaneous symmetry breaking and their restorations
-
Nuclear many-body systems
- infinite nuclear matter properties
- atomic nuclei (structure and reaction)
- neutron star merger and gravitational wave emission
-
Development of ab initio Density Functional Theory
- diagramatic resummation
- path integral and effective action
- regularisation in Effective Field Theory
- Many‑Body Perturbation Theory
- Variational Perturbation Theory
- Superfluid Local Density Approximation
-
Collective behaviour of many-body systems
- superfluidity and superconductivity
- equation of states and thermodynamics
- linear response and collective modes
- self‑energy and Landau‑Fermi liquid theory
- structure and dynamics of superfluid vortices
- quantum turbulence and chaos
- quantum quench dynamics and Higgs modes
-
Analogue quantum gravity and cosmology
- quantum and hydrodynamic black hole simulation
- Hawking and Unruh (analogue) effects