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Staff scientist

Education & Research Experience

  • 2017– Staff scientist, CNRS.
  • 2015–2017 PostDoc, “Towards description of resonances within the MPMH method and improved mean field interactions using renormalized chiral interactions”, Collaborator: Dr. habil. Nathalie Pillet. CEA bruyères-le-châtel, Arpajon, France.
  • 2015–2015 Visiting Scholar, “Effective field theory of infinite nuclear matter connecting ab initio to EDF methods”, Collaborator: Dr. habil. Denis Lacroix. IPN Orsay, CNRS/IN2P3, France.
  • 2012–2014 PostDoc, “Study of the effects of the chiral three-nucleon interaction in light-nuclei reactions within the ab initio No-Core Shell Model combined with the Resonating Group Method”, Collaborator: Dr. Sofia Quaglioni. Lawrence Livermore National Laboratory (LLNL), California USA.
  • 2008–2011 Ph.D., Theoretical Nuclear Physics, “Functional Approach of Pairing in Nuclei”, (with highest honors), Supervisor: Dr. habil. Denis Lacroix. University of Caen Basse-Normandie– Grand Accélérateur National d’Ions Lourds (GANIL), Caen, France.
  • 2007–2008 Master of Physics, Section Condensed Matter and Radiation, (with distinction). University Joseph Fourier, Grenoble, France.
  • 2006–2008 Master of Engineering, Section Functional Materials and Nanotechnology, (with high distinction). École Nationale Supérieure de Physique de Grenoble (INPG-Phelma), Grenoble, France.
  • 2005–2006 Bachelor of Engineering, Section Physics, (with distinction). École Nationale Supérieure de Physique de Grenoble (INPG-Phelma), Grenoble, France.
  • 2003–2005 Classes préparatoires aux grandes écoles, Section Mathematics and Physics. Lycée de Kérichen, Brest, France.
  • 2003 Baccalauréat, Section Sciences, (with high distinction). Lycée Charles de Foucauld, Brest, France.

Research Interests

  • Statistical methods and machine learning for the many-body problem: towards Quantum Machine learning ?
  • The role of many-body renormalization on the bare nuclear interaction: how to derive a mean field from first principles?
  • Studying nuclei as open quantum systems: role and treatment of the continuum
  • Nuclear reactions and structure using ab initio No-Core Shell Model with Continuum method
  • Nuclear interaction from first principles using Effective Field Theory: impact of Chiral three-nucleon interaction on structure and reaction observables
  • Nuclear pairing and Energy Density Functional theory
  • Symmetry breaking and restoration

Other Professional Activities

  • Reviewing Grant for the Polish National Science Center, Physical Review Letters, Physical Review C, European Physical Journal A.
  • Advance master lecture on non-relativistic quantum collisions.



Journal articles18 documents

Conference papers9 documents

  • F. Raimondi, G. Hupin, P. Navrátil, S. Quaglioni. $^7Li(d,p)^8Li$ transfer reaction in the NCSM/RGM approach. 15th Conference on Theoretical Nuclear Physics in Italy, Apr 2016, Pisa, Italy. pp.012006, ⟨10.1088/1742-6596/981/1/012006⟩. ⟨hal-01758691⟩
  • C. Romero-Redondo, S. Quaglioni, P. Navrátil, G. Hupin. Advances in the ab initio description of nuclear three-cluster systems. 21st International Conference on Few-Body Problems in Physics (FB21), May 2015, Chicago, United States. pp.03004, ⟨10.1051/epjconf/201611303004⟩. ⟨in2p3-01193120⟩
  • G. Hupin. Pairing correlation in finite system. The XVIIth "colloque GANIL", Sep 2011, Belgodere (Corse), France. ⟨in2p3-00626790⟩
  • G. Hupin, David Lacroix, M. Bender. Functional approach for pairing in finite systems: How to de ne restoration of broken symmetries in Energy Density Functional theory ?. Many-body corelations from dilute to dense nuclear systems (MBC 2011), 2011, Paris, France. pp.012056, ⟨10.1088/1742-6596/321/1/012056⟩. ⟨in2p3-00642108⟩
  • G. Hupin, D. Lacroix. On the application of symmetry breaking and its restoration to treat pairing correlation in finite nuclei. YKIS2011 : Frontier Issues in Physics of Exotic Nuclei, Oct 2011, Kyoto, Japan. pp.250-254, ⟨10.1143/PTPS.196.250⟩. ⟨in2p3-00680726⟩
  • G. Hupin. Pairing in finite systems with functional theories. FUSTIPEN French-U.S. Theory Institute for Physics with Exotic Nuclei, Jan 2011, Caen, France. ⟨in2p3-00558135⟩
  • David Lacroix, G. Hupin. Density functional for pairing with particle number conservation. International Symposium Forefronts of Researches in Exotic Nuclear Structures, Mar 2010, Niigata, Japan. pp.1854-1857, ⟨10.1142/S0217732310000484⟩. ⟨in2p3-00480998⟩
  • D. Lacroix, M. Assié, S. Ayik, G. Hupin, J.A. Scarpaci, et al.. Beyond mean-field description of break-up, transfer and fusion.. International Conference Nuclear Structure and Related Topics (NSRT), Jun 2009, Dubna, Russia. pp.244-251. ⟨in2p3-00402719⟩
  • D. Lacroix, G. Hupin. Exact Stochastic Mean-Field dynamics. FUSION08: New Aspects of Heavy Ion collisions Near the Coulomb Barrier, Sep 2008, Chicago, United States. pp.128-132, ⟨10.1063/1.3108765⟩. ⟨in2p3-00348464⟩

Poster communications1 document

  • G. Hupin, D. Lacroix. Non-Markovian effects in quantum system: an exact stochastic mean-field treatment. A.I Vdovin, V.V Voronov, R.V. Jolos. International Conference on Nuclear Structure and Related Topics (NSRT), Jun 2009, Dubna, Russia. Volume II, pp.260-263, 2009. ⟨in2p3-00402730⟩

Preprints, Working Papers, ...3 documents

  • Konstantinos Kravvaris, Sofia Quaglioni, Guillaume Hupin, Petr Navratil. Ab initio framework for nuclear scattering and reactions induced by light projectiles. 2020. ⟨hal-03086784⟩
  • Callum Mccracken, Petr Navratil, Anna Mccoy, Sofia Quaglioni, Guillaume Hupin. Ab initio investigation of the $^8$Li($n, \gamma$)$^9$Li reaction. 2020. ⟨hal-02946174⟩
  • G. Hupin, Denis Lacroix, M. Bender. Functional approach for pairing in finite systems: How to define restoration of broken symmetries in Energy Density Functional theory ?. 2011. ⟨in2p3-00600240⟩

Theses1 document

  • G. Hupin. Approches fonctionnelles de la densité pour les systèmes finis appariés. Physique Nucléaire Théorique [nucl-th]. Université de Caen, 2011. Français. ⟨tel-00626383⟩