Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transition Radiation (OTR), cannot tolerate high power beams without significant mechanical damages of the diagnostics device. Optical Diffraction Radiation (ODR), instead, is an excellent candidate for the measurements of the transverse phase space parameters in a non-intercepting way. One of the main limitations of this method is the low signal to noise ratio, mainly due to the synchrotron radiation background. This problem can be overcome by using ODRI (ODR Interference). In this case the beam goes through slits opened in two metallic foils placed at a distance shorter than the radiationformation zone. Due to the shielding effect of the first scre...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
The characterization of the transverse phase space of electron beams with high charge density and hi...
Linear colliders (LCs) and short wavelength free electron lasers (FELs) require ultra-high brilliant...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transiti...
Conventional intercepting transverse electron beam di-agnostics, as the one based on Optical Transit...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transit...
Conventional intercepting transverse electron beam diagnostics, e.g. based on Optical Transition Ra...
Transverse electron beam size measurements are required in order to determine the transverse emittan...
Transverse electron beam size measurements are required in order to determine the transverse emitta...
Conventional intercepting transverse electron beam diagnostics, e.g. based on Optical Transition Ra...
The characterization of the transverse phase space for high charge density and high energy electron ...
The characterization of the transverse phase space for high charge density and high energy electron ...
High-gain Free Electron Lasers and future Linear Colliders require development of modern electron l...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
The characterization of the transverse phase space of electron beams with high charge density and hi...
Linear colliders (LCs) and short wavelength free electron lasers (FELs) require ultra-high brilliant...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transiti...
Conventional intercepting transverse electron beam di-agnostics, as the one based on Optical Transit...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transit...
Conventional intercepting transverse electron beam diagnostics, e.g. based on Optical Transition Ra...
Transverse electron beam size measurements are required in order to determine the transverse emittan...
Transverse electron beam size measurements are required in order to determine the transverse emitta...
Conventional intercepting transverse electron beam diagnostics, e.g. based on Optical Transition Ra...
The characterization of the transverse phase space for high charge density and high energy electron ...
The characterization of the transverse phase space for high charge density and high energy electron ...
High-gain Free Electron Lasers and future Linear Colliders require development of modern electron l...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
The characterization of the transverse phase space of electron beams with high charge density and hi...
Linear colliders (LCs) and short wavelength free electron lasers (FELs) require ultra-high brilliant...