General information
            
            
                
                
                
                    
                        Organisation
                    
                    The French Alternative Energies and Atomic Energy Commission (CEA) is a key player in research, development and innovation in four main areas :
• defence and security,
• nuclear energy (fission and fusion),
• technological research for industry,
• fundamental research in the physical sciences and life sciences.
Drawing on its widely acknowledged expertise, and thanks to its 16000 technicians, engineers, researchers and staff, the CEA actively participates in collaborative projects with a large number of academic and industrial partners.
The CEA is established in ten centers spread throughout France
  
                
                
                    
                        Reference
                    
                    SL-DRF-26-0374  
                
        
                
                
                
                
             
	Direction
DRF
Thesis topic details
	Category
Corpuscular physics and outer space
	Thesis topics
Beam dynamics for a multi-stage laser-plasma accelerator
	Contract
Thèse
	Job description
	Laser–plasma wakefield accelerators (LWFAs) can provide accelerating gradients exceeding 100 GV/m, providing a pathway to reduce the size and cost of future high-energy accelerators for applications in synchrotron radiation, free-electron lasers, and emerging medical and industrial uses.
Scaling this technology to higher beam energies and charges requires both technological maturity and innovative acceleration schemes. Multi-stage configurations — connecting several plasma acceleration stages — offer key advantages: increasing beam energy beyond single-cell limits and enhancing total charge and/or repetition rate. These systems aim to overcome single-stage limitations while maintaining or improving beam quality at higher energies.
Designing an accelerator delivering stable, reproducible, high-quality beams requires comprehensive understanding of plasma acceleration physics and beam transport between successive stages.
Building on expertise at CEA Paris–Saclay's DACM, this PhD will focus on physical and numerical studies to propose a fully integrated multi-stage LWFA design, with particular attention to optimizing all components — plasma accelerating section and transport lines — to preserve beam quality in terms of transverse size, divergence, emittance, and energy spread.
 
	University / doctoral school
PHENIICS (PHENIICS)
Paris-Saclay
Thesis topic location
	Site
Saclay
Requester
	Position start date
01/10/2026
	Person to be contacted by the applicant
CHAUVIN Nicolas 
 Nicolas.Chauvin@cea.fr
CEA
DRF/IRFU/DACM/Leda
CEA Paris-Saclay
91191 Gif sur Yvette Cedex
France
 +33 1 69 08 50 76
	Tutor / Responsible thesis director
  
 
 
	En savoir plus
https://irfu.cea.fr/Phocea/Vie_des_labos/Ast/ast_groupe.php?id_groupe=295