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emitters mediated by cavity photons and to reveal phenomena such as superradiance and subradiance, which have never been observed in the context of lattice quantum electrodynamics. This PhD thesis is part of
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25 Mar 2026 Job Information Organisation/Company CNRS - University of Lille Department Laboratory PhLAM Research Field Physics » Optics Researcher Profile First Stage Researcher (R1) Positions PhD
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such as gap solitons and synchronized arrays of photonic resonators. This PhD thesis aims to investigate both numerically and experimentally the emergence of nonlinear phenomena in a unique lattice of
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in C++ is a preference. The successful candidate will work under the supervision of Prof.Mikhail Zubkov: https://www.ariel.ac.il/wp/mikhail-zubkov/ The particular interest is in • the numerical lattice
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Supervision of PhD and Master student(s) Share this opening! Use the following URL: https://jobs.icfo.eu/?detail=1082
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, Hard Condensed Matter Physics , Hard Condensed Matter Theory , hep , HEP-Experiment (hep-ex) , hep-lat , HEP-Lattice (hep-lat) , hep-ph , HEP-Phenomenology (hep-ph) , hep-th , HEP-Theory (hep-th) , High
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20 Mar 2026 Job Information Organisation/Company cnrs Department LEM3 Research Field Engineering Researcher Profile First Stage Researcher (R1) Positions PhD Positions Application Deadline 30 Jun
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the Budapest-Marseille-Wuppertal lattice collaboration. Your Profile: Master and subsequent PhD in theoretical particle physics or similar field Strong motivation for working in the field Extensive experience in
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Institut of Mineralogy, Physics of Materials and Cosmochemistry | Paris 15, le de France | France | 5 days ago
category: Contrat doctoral PhD funded by Institut des matériaux de Sorbonne Université (iMat) PHD title: Doctorat de Physique PHD Country: France Where to apply Website https://www.abg.asso.fr/fr
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Sorbonne Université SIS (Sciences, Ingénierie, Santé) | Paris 15, le de France | France | 23 days ago
materials based on Sn epitaxial lattices. For this experimental project, the PhD student will study theSn growth and structure, using scanning tunneling microscopy and surface X-ray diffraction on synchrotron