This article reports the development of a compact Thomson parabola spectrometer for laser-accelerated ions that can measure angular distribution with a high energy resolution and has a variable measurable energy range. The angular-resolved energy spectra for different ion species can be measured in a single shot, and the sampling angle can be selected from outside the vacuum region. The electric and magnetic fields are applied to the ion dispersion by using a permanent magnetic circuit and annulus sector-shaped electrodes with a wedge configuration. The compact magnetic circuit consists of permanent magnets, fixed yokes, and movable yokes. The magnetic flux is intentionally leaked to the movable yokes, allowing the magnetic field to be ...
Laser-generated plasmas were obtained in high vacuum by irradiating micrometric thin films (Au, Au/M...
Laser-generated plasmas were obtained in high vacuum by irradiating micrometric thin films (Au, Au/M...
The SEPAGE diagnostic will detect charged particles (electrons, protons, and ions) accelerated in th...
This article reports the development, construction, and experimental test of an angle-resolved Thoms...
A novel Thomson parabola ion spectrometer design is presented, in which a gradient electric field co...
A novel Thomson parabola ion spectrometer design is presented, in which a gradient electric field co...
A novel Thomson parabola ion spectrometer design is presented, in which a gradient electric field co...
In recent decades, laser-driven ion acceleration experiments have been carried out in the intense la...
This thesis details my work on developing a new Thomson parabola spectrometer for use at the SCARLE...
Modern high-power laser systems like the Vulcan Laser at Central Laser Facility at Rutherford Applet...
A modification to the standard Thomson parabola spectrometer is discussed, which is designed to meas...
We report on the experimental characterisation of laser-driven ion beams using a Thomson Parabola Sp...
A compact Thomson parabola spectrometer for diagnostics of laser-generated plasma, projected in Mess...
We report on the experimental characterisation of laser-driven ion beams using a Thomson Parabola Sp...
We report on the experimental characterisation of laser-driven ion beams using a Thomson Parabola Sp...
Laser-generated plasmas were obtained in high vacuum by irradiating micrometric thin films (Au, Au/M...
Laser-generated plasmas were obtained in high vacuum by irradiating micrometric thin films (Au, Au/M...
The SEPAGE diagnostic will detect charged particles (electrons, protons, and ions) accelerated in th...
This article reports the development, construction, and experimental test of an angle-resolved Thoms...
A novel Thomson parabola ion spectrometer design is presented, in which a gradient electric field co...
A novel Thomson parabola ion spectrometer design is presented, in which a gradient electric field co...
A novel Thomson parabola ion spectrometer design is presented, in which a gradient electric field co...
In recent decades, laser-driven ion acceleration experiments have been carried out in the intense la...
This thesis details my work on developing a new Thomson parabola spectrometer for use at the SCARLE...
Modern high-power laser systems like the Vulcan Laser at Central Laser Facility at Rutherford Applet...
A modification to the standard Thomson parabola spectrometer is discussed, which is designed to meas...
We report on the experimental characterisation of laser-driven ion beams using a Thomson Parabola Sp...
A compact Thomson parabola spectrometer for diagnostics of laser-generated plasma, projected in Mess...
We report on the experimental characterisation of laser-driven ion beams using a Thomson Parabola Sp...
We report on the experimental characterisation of laser-driven ion beams using a Thomson Parabola Sp...
Laser-generated plasmas were obtained in high vacuum by irradiating micrometric thin films (Au, Au/M...
Laser-generated plasmas were obtained in high vacuum by irradiating micrometric thin films (Au, Au/M...
The SEPAGE diagnostic will detect charged particles (electrons, protons, and ions) accelerated in th...