Implementation of laser-plasma-based acceleration stages in user-oriented facilities requires the definition and deployment of appropriate diagnostic methodologies to monitor and control the acceleration process. An overview is given here of optical diagnostics for density measurement in laser-plasma acceleration stages, with emphasis on well-established and easily implemented approaches. Diagnostics for both neutral gas and free-electron number density are considered, highlighting real-time measurement capabilities. Optical interferometry, in its various configurations, from standard two-arm to more advanced common-path designs, is discussed, along with spectroscopic techniques such as Stark broadening and Raman scattering. A critical anal...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Plasma-based acceleration techniques are of great interest for future, compact accelerators due to t...
Advanced particle accelerators are based on the excitation of large amplitude plasma waves driven b...
This paper describes innovative laser diagnostics under development at the National Institute for Fu...
Characterization of the electron density in laser produced plasmas is presented using direct wavefro...
Characterization of the electron density in laser produced plasmas is presented using direct wavefro...
Laser-produced plasmas (LPPs) engulf exotic and complex conditions ranging in temperature, density, ...
As plasma-based particle acceleration techniques are becoming intensely developed, the diagnostic to...
A high-sensitivity high-speed second-harmonic interferometer is used to monitor the particle number ...
A high-sensitivity high-speed second-harmonic interferometer is used to monitor the particle number ...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Plasma-based acceleration techniques are of great interest for future, compact accelerators due to t...
Advanced particle accelerators are based on the excitation of large amplitude plasma waves driven b...
This paper describes innovative laser diagnostics under development at the National Institute for Fu...
Characterization of the electron density in laser produced plasmas is presented using direct wavefro...
Characterization of the electron density in laser produced plasmas is presented using direct wavefro...
Laser-produced plasmas (LPPs) engulf exotic and complex conditions ranging in temperature, density, ...
As plasma-based particle acceleration techniques are becoming intensely developed, the diagnostic to...
A high-sensitivity high-speed second-harmonic interferometer is used to monitor the particle number ...
A high-sensitivity high-speed second-harmonic interferometer is used to monitor the particle number ...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Nowadays, plasma wakefield acceleration is the most promising acceleration technique for compact an...
Plasma-based acceleration techniques are of great interest for future, compact accelerators due to t...
Advanced particle accelerators are based on the excitation of large amplitude plasma waves driven b...