Transverse electron beam size measurements are required in order to determine the transverse emittance. In the case of high brightness electron beams produced by high repetition rate linear accelerators, conventional invasive diagnostics cannot sustain the intense power dissipated in intercepting devices. The analysis of the angular distribution of diffraction radiation has been proven to be a competent candidate for non-intercepting measurements of electron beam parameters. In addition, optical diffraction radiation interference (ODRI) has been demonstrated to be superior to the single slit ODR due to ist shielding capability against the synchrotron radiation Background and the possibility of avoiding complementary diagnostics. This paper ...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
Linear colliders (LCs) and short wavelength free electron lasers (FELs) require ultra-high brilliant...
High-gain Free Electron Lasers and future Linear Colliders require development of modern electron l...
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, 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, e.g. based on Optical Transition Ra...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transit...
The characterization of the transverse phase space for high charge density and high energy electron ...
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 ...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
Linear colliders (LCs) and short wavelength free electron lasers (FELs) require ultra-high brilliant...
High-gain Free Electron Lasers and future Linear Colliders require development of modern electron l...
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, 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, e.g. based on Optical Transition Ra...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transit...
The characterization of the transverse phase space for high charge density and high energy electron ...
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 ...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
Linear colliders (LCs) and short wavelength free electron lasers (FELs) require ultra-high brilliant...
High-gain Free Electron Lasers and future Linear Colliders require development of modern electron l...