Offres de stages pour les étudiants de M2
Année 2023-2024
{“type”:”elementor”,”siteurl”:”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-json/”,”elements”:[{“id”:”738a0d0″,”elType”:”widget”,”isInner”:false,”isLocked”:false,”settings”:{“editor”:”<table style=\”border-collapse: collapse;width: 95.4308%\”><tbody><tr><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”> </td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Title</strong></td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Supervisors (laboratory)</strong></td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Funding</strong></td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Student</strong></td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”http://stages-masters.sf2a.eu/index.php?from=e31e01ea\” target=\”_blank\” rel=\”noopener\”><em>Various internship offers in astrophysics listed by the SF2A</em></a></td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>various labs in France</em></td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>Various internship offers in theoretical chemistry listed by the RFCT: <a href=\”https://rfct-pole-ouest.cnrs.fr/actualites-scientifiques/offres-demploistages/\”>pôle Ouest</a>, <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique28\”>pôle Nord-Île-de-France</a>, <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique36\”>pôle Est-Nord-Est</a>, <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique48\”>pôle Sud-Est</a> et <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique44\”>pôle Sud-Ouest</a></em></td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>various labs in France</em></td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><em><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/Novosibirsk-State-University-internship-opportunities.pdf\”>Novosibirsk State University – internship opportunities</a></em></td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>various labs at Novosibirsk (Russia)<br /></em></td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>1</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/09/patrocle.pdf\”>The dynamical behavior of the binary Patroclus-Menoetius</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Benoît Noyelles (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>sought</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>2</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/09/Fiche-DEVEL-projet-M2-P2N-2020-2021-suies.pdf\”>Mieux comprendre l’influence des suies sur le climat : calcul des propriétés de diffusion de la lumière par les particules carbonées issues des phénomènes de combustion</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Michel Devel (FEMTO-ST dpt. MN2S, ENSMM, Besançon) & Sylvain Picaud (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>3</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/09/ANR_HCO-FOR-LLAC_M2R_comput_chem_eng-1.pdf\”>Molecular modelling: catalytic properties of some specific organocatalysts</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Philippe Carbonniere & Jean-Marc Sotiropoulos (IPREM, Pau)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>4</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/Master2_proposal_NucleoMAP.pdf\”>Multiscale simulations of radical cation guanine in the nucleosomal DNA</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Natacha Gillet (ENS Lyon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>5</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/Stage-M2-2021.pdf\”>Caractérisation optique des aérosols en domaine TeraHertz</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Sophie Eliet (IEMM, Lille)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>6</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/stageM2-BDgaia-2020.pdf\”>Caractérisation des naines brunes révélées par Gaia</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Céline Reylé (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>7</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/M2-PhDStudentship-theory.pdf\”>Theoretical studies of Copper centers</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Hélène Jamet (Department of molecular chemistry, Université de Grenoble)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>8</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/proposition_stage-thèse_LPL_ColdMol.pdf\”>Precision measurements and tests of fundamental physics with cold molecules</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Benoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>9</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/proposition_stage-thèse_LPL_QCL.pdf\”>Widely tunable ultra-stable and SI-traceable quantum cascade lasers for frequency metrology and mid-infrared precise spectroscopy: application to space, atmospheric and fundamental physics</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Benoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>10</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/Sujet-stage.docx\”>Propriétés thermodynamiques des matériaux par calculs ab initio</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>François Cottin & Grégory Geneste (CEA, Bruyères-le-Châtel (île-de-France))</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>11</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/Master-Internship-Proposal_2020-ICGM-Hutch.pdf\”>Thermoelectric functionalization of silica based superinsulating materials via ab initio simulations</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Philippe Jund (ICGM & Hutchinson, Montpellier)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>12</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/StageM2_2021_Photometry_JMP_PR.pdf\”>Étude statistique des propriétés physiques des objets transneptuniens</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Jean-Marc Petit & Philippe Rousselot (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>13</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/12/Sujet-de-Stage-2021-_CEA_DES_LMTE.pdf\”>Modélisation des transferts de substances dans l’environnement</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Emilie Cohenny (CEA Cadarache (Bouches-du-Rhône))</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>14</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2021/01/Stage-MONICA.pdf\”>Mise en œuvre d’un outils de simulation : MONICA et couplage avec un outils interne de modélisation ferroviaire</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Nicolas Ringo, Gerard Auditeau & Jérôme Deon (SNCF)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>15</td><td style=\”border-style: solid;border-color: #b0b0b0\”>The lensing in galaxy cluster: building mass models for dark matter mapping</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Emmanuel Hugot (Laboratoire d’Astrophysique de Marseille)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><p>Meriam Ezziati</p></td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>16</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Modelling radiative output from galaxies</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Kentaro Nagamine (astrophysics department of Osaka university (Japan))</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Dylan Chosson</td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>17</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Étude de la lumière diffusée sur le détecteur d’ondes gravitationnelles VIRGO</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Romain Gouaty (Laboratoire d’Annecy de Physique des Particules)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Katheen Stehlin</td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>18</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Interférométrie SAR de télédétection pour l’estimation des déformations de la surface des Alpes: Comment apprendre la cohérence temporelle à partir de la matrice de covariance complète des séries temporelles d’images SAR?</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Sophie Giffard-Roisin (Institut des Sciences de la Terre, Grenoble)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Salah-Eddine Boudaour</td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>19</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Étude de la formation et de l’évolution des trous noirs supermassifs et de leurs galaxies hôtes, en utilisant les réseaux de pulsars (pulsar timing arrays) comme détecteurs d’ondes gravitationnelles</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Siyuan Chen (Laboratoire de physique et de chimie de l’environnement et de l’espace, Orléans)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Musfar 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style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”> </td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Title</strong></td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Supervisors (laboratory)</strong></td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Funding</strong></td><td style=\”border-style: solid;border-color: #b0b0b0;background-color: #b6c1d1\”><strong>Student</strong></td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”http://stages-masters.sf2a.eu/index.php?from=e31e01ea\” target=\”_blank\” rel=\”noopener\”><em>Various internship offers in astrophysics listed by the SF2A</em></a></td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>various labs in France</em></td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>Various internship offers in theoretical chemistry listed by the RFCT: <a href=\”https://rfct-pole-ouest.cnrs.fr/actualites-scientifiques/offres-demploistages/\”>pôle Ouest</a>, <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique28\”>pôle Nord-Île-de-France</a>, <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique36\”>pôle Est-Nord-Est</a>, <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique48\”>pôle Sud-Est</a> et <a href=\”http://www.chimie-theorique.cnrs.fr/spip.php?rubrique44\”>pôle Sud-Ouest</a></em></td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>various labs in France</em></td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><em><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/Novosibirsk-State-University-internship-opportunities.pdf\”>Novosibirsk State University – internship opportunities</a></em></td><td style=\”border-style: solid;border-color: #b0b0b0\”><em>various labs at Novosibirsk (Russia)<br /></em></td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>1</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/09/patrocle.pdf\”>The dynamical behavior of the binary Patroclus-Menoetius</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Benoît Noyelles (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>sought</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>2</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/09/Fiche-DEVEL-projet-M2-P2N-2020-2021-suies.pdf\”>Mieux comprendre l’influence des suies sur le climat : calcul des propriétés de diffusion de la lumière par les particules carbonées issues des phénomènes de combustion</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Michel Devel (FEMTO-ST dpt. MN2S, ENSMM, Besançon) & Sylvain Picaud (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>3</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/09/ANR_HCO-FOR-LLAC_M2R_comput_chem_eng-1.pdf\”>Molecular modelling: catalytic properties of some specific organocatalysts</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Philippe Carbonniere & Jean-Marc Sotiropoulos (IPREM, Pau)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>4</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/Master2_proposal_NucleoMAP.pdf\”>Multiscale simulations of radical cation guanine in the nucleosomal DNA</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Natacha Gillet (ENS Lyon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>5</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/Stage-M2-2021.pdf\”>Caractérisation optique des aérosols en domaine TeraHertz</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Sophie Eliet (IEMM, Lille)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>6</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/stageM2-BDgaia-2020.pdf\”>Caractérisation des naines brunes révélées par Gaia</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Céline Reylé (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>7</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/10/M2-PhDStudentship-theory.pdf\”>Theoretical studies of Copper centers</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Hélène Jamet (Department of molecular chemistry, Université de Grenoble)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>8</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/proposition_stage-thèse_LPL_ColdMol.pdf\”>Precision measurements and tests of fundamental physics with cold molecules</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Benoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>9</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/proposition_stage-thèse_LPL_QCL.pdf\”>Widely tunable ultra-stable and SI-traceable quantum cascade lasers for frequency metrology and mid-infrared precise spectroscopy: application to space, atmospheric and fundamental physics</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Benoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>10</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/Sujet-stage.docx\”>Propriétés thermodynamiques des matériaux par calculs ab initio</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>François Cottin & Grégory Geneste (CEA, Bruyères-le-Châtel (île-de-France))</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>11</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/Master-Internship-Proposal_2020-ICGM-Hutch.pdf\”>Thermoelectric functionalization of silica based superinsulating materials via ab initio simulations</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Philippe Jund (ICGM & Hutchinson, Montpellier)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>12</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/11/StageM2_2021_Photometry_JMP_PR.pdf\”>Étude statistique des propriétés physiques des objets transneptuniens</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Jean-Marc Petit & Philippe Rousselot (Institut UTINAM, Besançon)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>13</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2020/12/Sujet-de-Stage-2021-_CEA_DES_LMTE.pdf\”>Modélisation des transferts de substances dans l’environnement</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Emilie Cohenny (CEA Cadarache (Bouches-du-Rhône))</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>14</td><td style=\”border-style: solid;border-color: #b0b0b0\”><a href=\”https://physique-fondamentale-application-compuphys.ubfc.fr/wp-content/uploads/sites/29/2021/01/Stage-MONICA.pdf\”>Mise en œuvre d’un outils de simulation : MONICA et couplage avec un outils interne de modélisation ferroviaire</a></td><td style=\”border-style: solid;border-color: #b0b0b0\”>Nicolas Ringo, Gerard Auditeau & Jérôme Deon (SNCF)</td><td style=\”border-style: solid;border-color: #b0b0b0\”>acquired</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>15</td><td style=\”border-style: solid;border-color: #b0b0b0\”>The lensing in galaxy cluster: building mass models for dark matter mapping</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Emmanuel Hugot (Laboratoire d’Astrophysique de Marseille)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”><p>Meriam Ezziati</p></td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>16</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Modelling radiative output from galaxies</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Kentaro Nagamine (astrophysics department of Osaka university (Japan))</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Dylan Chosson</td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>17</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Étude de la lumière diffusée sur le détecteur d’ondes gravitationnelles VIRGO</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Romain Gouaty (Laboratoire d’Annecy de Physique des Particules)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Katheen Stehlin</td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>18</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Interférométrie SAR de télédétection pour l’estimation des déformations de la surface des Alpes: Comment apprendre la cohérence temporelle à partir de la matrice de covariance complète des séries temporelles d’images SAR?</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Sophie Giffard-Roisin (Institut des Sciences de la Terre, Grenoble)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Salah-Eddine Boudaour</td></tr><tr><td style=\”border-style: solid;border-color: #b0b0b0\”>19</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Étude de la formation et de l’évolution des trous noirs supermassifs et de leurs galaxies hôtes, en utilisant les réseaux de pulsars (pulsar timing arrays) comme détecteurs d’ondes gravitationnelles</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Siyuan Chen (Laboratoire de physique et de chimie de l’environnement et de l’espace, Orléans)</td><td style=\”border-style: solid;border-color: #b0b0b0\”> </td><td style=\”border-style: solid;border-color: #b0b0b0\”>Musfar Kozhikkal</td></tr></tbody></table>\t\t\t\t\t</div>\n\t\t\t\t\t\t</div>\n\t\t”,”editSettings”:{“defaultEditRoute”:”content”,”panel”:{“activeTab”:”content”,”activeSection”:”section_editor”}}}]}
Année 2020-2021
Title | Supervisors (laboratory) | Funding | Student | |
Various internship offers in astrophysics listed by the SF2A | various labs in France | |||
Various internship offers in theoretical chemistry listed by the RFCT: pôle Ouest, pôle Nord-Île-de-France, pôle Est-Nord-Est, pôle Sud-Est et pôle Sud-Ouest | various labs in France | |||
Novosibirsk State University – internship opportunities | various labs at Novosibirsk (Russia) | |||
1 | The dynamical behavior of the binary Patroclus-Menoetius | Benoît Noyelles (Institut UTINAM, Besançon) | sought | |
2 | Mieux comprendre l’influence des suies sur le climat : calcul des propriétés de diffusion de la lumière par les particules carbonées issues des phénomènes de combustion | Michel Devel (FEMTO-ST dpt. MN2S, ENSMM, Besançon) & Sylvain Picaud (Institut UTINAM, Besançon) | ||
3 | Molecular modelling: catalytic properties of some specific organocatalysts | Philippe Carbonniere & Jean-Marc Sotiropoulos (IPREM, Pau) | acquired | |
4 | Multiscale simulations of radical cation guanine in the nucleosomal DNA | Natacha Gillet (ENS Lyon) | ||
5 | Caractérisation optique des aérosols en domaine TeraHertz | Sophie Eliet (IEMM, Lille) | acquired | |
6 | Caractérisation des naines brunes révélées par Gaia | Céline Reylé (Institut UTINAM, Besançon) | ||
7 | Theoretical studies of Copper centers | Hélène Jamet (Department of molecular chemistry, Université de Grenoble) | ||
8 | Precision measurements and tests of fundamental physics with cold molecules | Benoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13) | ||
9 | Widely tunable ultra-stable and SI-traceable quantum cascade lasers for frequency metrology and mid-infrared precise spectroscopy: application to space, atmospheric and fundamental physics | Benoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13) | ||
10 | Propriétés thermodynamiques des matériaux par calculs ab initio | François Cottin & Grégory Geneste (CEA, Bruyères-le-Châtel (île-de-France)) | ||
11 | Thermoelectric functionalization of silica based superinsulating materials via ab initio simulations | Philippe Jund (ICGM & Hutchinson, Montpellier) | acquired | |
12 | Étude statistique des propriétés physiques des objets transneptuniens | Jean-Marc Petit & Philippe Rousselot (Institut UTINAM, Besançon) | acquired | |
13 | Modélisation des transferts de substances dans l’environnement | Emilie Cohenny (CEA Cadarache (Bouches-du-Rhône)) | acquired | |
14 | Mise en œuvre d’un outils de simulation : MONICA et couplage avec un outils interne de modélisation ferroviaire | Nicolas Ringo, Gerard Auditeau & Jérôme Deon (SNCF) | acquired | |
15 | The lensing in galaxy cluster: building mass models for dark matter mapping | Emmanuel Hugot (Laboratoire d’Astrophysique de Marseille) | Meriam Ezziati | |
16 | Modelling radiative output from galaxies | Kentaro Nagamine (astrophysics department of Osaka university (Japan)) | Dylan Chosson | |
17 | Étude de la lumière diffusée sur le détecteur d’ondes gravitationnelles VIRGO | Romain Gouaty (Laboratoire d’Annecy de Physique des Particules) | Katheen Stehlin | |
18 | Interférométrie SAR de télédétection pour l’estimation des déformations de la surface des Alpes: Comment apprendre la cohérence temporelle à partir de la matrice de covariance complète des séries temporelles d’images SAR? | Sophie Giffard-Roisin (Institut des Sciences de la Terre, Grenoble) | Salah-Eddine Boudaour | |
19 | Étude de la formation et de l’évolution des trous noirs supermassifs et de leurs galaxies hôtes, en utilisant les réseaux de pulsars (pulsar timing arrays) comme détecteurs d’ondes gravitationnelles | Siyuan Chen (Laboratoire de physique et de chimie de l’environnement et de l’espace, Orléans) | Musfar Kozhikkal |