Euv Emission of Femtosecond Laser-induced Nano-plasmas

il y a 7 jours


Besançon, France FEMTO-ST institute Temps plein

**EUV emission of femtosecond laser-induced nano-plasmas**: - Réf **ABG-133194** - Sujet de Thèse - 22/08/2025 - Contrat doctoral - FEMTO-ST institute - Lieu de travail- Besancon - Bourgogne-Franche-Comté - France - Intitulé du sujet- EUV emission of femtosecond laser-induced nano-plasmas - Champs scientifiques- Sciences de l’ingénieur - Physique - Mots clés- laser-matter interaction, femtosecond laser pulses, beam shaping, plasmas, ultrafast science, spectroscopy, photonics, lasers, optics **Description du sujet**: The advancement of Extreme Ultraviolet (EUV) lithography relies on compact, high-brightness sources of EUV radiation. Currently, these sources are large-scale and complex, often requiring extensive installations with multiple CO2 lasers focused onto a single micro-sphere of frozen water. This bulkiness presents a significant limitation, and the emission has no directional control. Here, this thesis will explore the XUV emission of nano-plasma rods, generated through the irradiation of solid dielectrics with high-intensity shaped femtosecond laser pulses. Advanced Particle-In-Cell simulations from our group show that a fraction of the free-electrons in the plasma are highly accelerated, from eV to several keV around the critical plasma surface at which field amplification takes place [4,5]. This suggests that the laser-solid interaction will yield EUV emissions in a highly confined and controllable new scheme. The initial phase of the research is to develop a setup capable of recording EUV emissions from laser-induced nanoplasmas. All the necessary equipment is already available within our laboratory. In a second step, the PhD student will focus on identifying the key plasma control parameters that influence brightness, aiming for optimal spatial and temporal control. Finally, spatial shaping of the laser pulse will be employed to engineer the spatial profile of the emission pattern, allowing for greater directionality and luminosity. **References** [1] High aspect ratio nanochannel machining using single shot femtosecond Bessel beams M. K. Bhuyan, F. Courvoisier, P.A. Lacourt, M. Jacquot, R. Salut, L. Furfaro, and J. M. Dudley, [2] Nanoscale confinement of energy deposition in glass by double ultrafast Bessel pulses J. del Hoyo, R. Meyer, L. Furfaro and F. Courvoisier [3] In-situ diagnostic of femtosecond laser probe pulses for high resolution ultrafast imaging C. Xie, R. Meyer, L. Froehly, R. Giust, and F. Courvoisier, [4] Femtosecond laser-induced sub-wavelength plasma inside dielectrics: I. Field enhancement, Kazem Ardaneh, Remi Meyer, Mostafa Hassan, Remo Giust, Benoit Morel, Arnaud Couairon, Guy Bonnaud, and Francois Courvoisier, - [5] K. Ardaneh, R. Giust, P.J. Charpin, B. Morel and F. Courvoisier " Electron heating and radiation in high aspect ratio sub-micron plasma generated by an ultrafast Bessel pulse within a solid dielectric ", **Prise de fonction**: - 01/12/2025 **Nature du financement**: - Contrat doctoral **Précisions sur le financement**: **Présentation établissement et labo d'accueil**: - FEMTO-ST institute FEMTO-ST is one of the largest institutes of CNRS in France with more than 750 staff members. Within the Optics Department (85 people), the OPTO group is a large group of more than 30 academics, postdocs and PhD students on different areas of photonics (quantum engineering, artificial intelligence, ultrafast photonics: see group website). offering a rich and multicultural environment The research of the PhD topic will be realized within the team led by François Courvoisier. The team expertise on ultrafast laser-matter interaction, beam shaping, laser materials processing is internationally recognized by more than 70 invited talks at international conferences and an important track-record of funded European project proposals. Our PhD students and postdocs quickly find attractive positions in academia and industry. The research will take place in a new science building that provides access to a wide range of basic and technological sciences facilities, including numerous laboratories dedicated to photonics, 1300 m2 of clean room, and high-performance computing. The experimental system has its dedicated workspace. Besancon is in the East of France, 2 hours 15 minutes from Paris by train and near the foothills of the Jura mountains, close to excellent hiking and mountain bike trails, ski stations and rock-climbing formations. It is consistently rated as having one of the highest qualities of life in France and has a vibrant university atmosphere. **Site web**: **Intitulé du doctorat**: - Optique et photonique **Pays d'obtention du doctorat**: - France **Etablissement délivrant le doctorat**: - UNIVERSITE FRANCHE-COMTE BESANCON **Ecole doctorale**: - Sciences physiques pour l'ingénieur et microtechniques - SPIM Excellent scientist, open-minded physicist. The applicant must demonstrate a track-record of previous experimental work (at least significan



  • Besançon, Bourgogne-Franche-Comté, France femto-st Temps plein

    Context :The development of lubricants for space applications is a highly specialized challenge given the mechanical and physico-chemical environments in which the mechanisms operate. Whether on the ground, in air, in a vacuum, in a thermal vacuum, or in space, the systems operate in a succession of extreme environments.A range of lubricants already exists,...


  • Besançon, France FEMTO-ST institute Temps plein

    **PhD position on the tribology and psychophysics of tactile perception**: - Réf **ABG-133781** - Sujet de Thèse - 13/10/2025 - Contrat doctoral - FEMTO-ST institute - Lieu de travail- Besançon - Bourgogne-Franche-Comté - France - Intitulé du sujet- PhD position on the tribology and psychophysics of tactile perception - Champs scientifiques- Sciences...

  • Mécanique Appliquée

    il y a 7 jours


    Besançon, Bourgogne-Franche-Comté, France femto-st Temps plein

    Contexte : Dans un contexte de transition écologique, les composites biosourcés à base de fibres naturelles (lin, chanvre, etc.) représentent une alternative durable aux matériaux synthétiques. Leur faible impact environnemental et leurspropriétés mécaniques spécifiques en font des candidats idéaux pour des applications innovantes, notamment dans...

  • Stage R&D électronique

    il y a 1 semaine


    Besançon, Bourgogne-Franche-Comté, France Cisteo MEDICAL Temps plein

    Company DescriptionCisteo MEDICAL specializes in the development and manufacturing of medical devices through a complete, end-to-end process, from initial concept to controlled environment production. With extensive experience in medical device fabrication and development, the company supports projects across diverse fields such as cardiology, spinal...

  • Customer Support Engineer

    il y a 7 jours


    Besançon, France EXAIL Temps plein

    Become part of a global network of over 40 support engineers at the heart of Exail operations. With diverse technical backgrounds and expertise, our team works closely with customers—both remotely and on-site—to support every stage of Exail product integration and operation. This unique position offers hands-on experience with the full range of Exail...