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) &amp; 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 &amp; 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 &amp; 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 &amp; 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 &amp; 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 &amp; 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 &#8211; 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&#8217;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) &amp; 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 &amp; 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 &amp; 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 &amp; 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 &amp; 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&#8217;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&#8217;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 &amp; 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&#8217;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&#8217;ondes gravitationnelles VIRGO</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Romain Gouaty (Laboratoire d&#8217;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&#8217;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&#8217;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&#8217;évolution des trous noirs supermassifs et de leurs galaxies hôtes, en utilisant les réseaux de pulsars (pulsar timing arrays) comme détecteurs d&#8217;ondes gravitationnelles</td><td style=\”border-style: solid;border-color: #b0b0b0\”>Siyuan Chen (Laboratoire de physique et de chimie de l&#8217;environnement et de l&#8217;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

 TitleSupervisors (laboratory)FundingStudent
 Various internship offers in astrophysics listed by the SF2Avarious 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-Ouestvarious labs in France  
 Novosibirsk State University – internship opportunitiesvarious labs at Novosibirsk (Russia)
  
1The dynamical behavior of the binary Patroclus-MenoetiusBenoît Noyelles (Institut UTINAM, Besançon)sought 
2Mieux comprendre l’influence des suies sur le climat : calcul des propriétés de diffusion de la lumière par les particules carbonées issues des phénomènes de combustionMichel Devel (FEMTO-ST dpt. MN2S, ENSMM, Besançon) & Sylvain Picaud (Institut UTINAM, Besançon)  
3Molecular modelling: catalytic properties of some specific organocatalystsPhilippe Carbonniere & Jean-Marc Sotiropoulos (IPREM, Pau) acquired 
4Multiscale simulations of radical cation guanine in the nucleosomal DNANatacha Gillet (ENS Lyon)  
5Caractérisation optique des aérosols en domaine TeraHertzSophie Eliet (IEMM, Lille) acquired 
6Caractérisation des naines brunes révélées par GaiaCéline Reylé (Institut UTINAM, Besançon)  
7Theoretical studies of Copper centersHélène Jamet (Department of molecular chemistry, Université de Grenoble)  
8Precision measurements and tests of fundamental physics with cold moleculesBenoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13)  
9Widely tunable ultra-stable and SI-traceable quantum cascade lasers for frequency metrology and mid-infrared precise spectroscopy: application to space, atmospheric and fundamental physicsBenoît Darquié (Laboratoire de Physique des Lasers, Université de Paris 13)  
10Propriétés thermodynamiques des matériaux par calculs ab initioFrançois Cottin & Grégory Geneste (CEA, Bruyères-le-Châtel (île-de-France))  
11Thermoelectric functionalization of silica based superinsulating materials via ab initio simulationsPhilippe Jund (ICGM & Hutchinson, Montpellier)acquired 
12Étude statistique des propriétés physiques des objets transneptuniensJean-Marc Petit & Philippe Rousselot (Institut UTINAM, Besançon)acquired 
13Modélisation des transferts de substances dans l’environnementEmilie Cohenny (CEA Cadarache (Bouches-du-Rhône))acquired 
14Mise en œuvre d’un outils de simulation : MONICA et couplage avec un outils interne de modélisation ferroviaireNicolas Ringo, Gerard Auditeau & Jérôme Deon (SNCF)acquired 
15The lensing in galaxy cluster: building mass models for dark matter mappingEmmanuel Hugot (Laboratoire d’Astrophysique de Marseille) 

Meriam Ezziati

16Modelling radiative output from galaxiesKentaro Nagamine (astrophysics department of Osaka university (Japan)) Dylan Chosson
17Étude de la lumière diffusée sur le détecteur d’ondes gravitationnelles VIRGORomain Gouaty (Laboratoire d’Annecy de Physique des Particules) Katheen Stehlin
18Interférométrie 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
19Étude 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 gravitationnellesSiyuan Chen (Laboratoire de physique et de chimie de l’environnement et de l’espace, Orléans) Musfar Kozhikkal