The characterization of the transverse phase space for high charge density and high energy electron beams is demanding for the successful development of the next generation light sources and linear colliders. Due to its non-invasive and non-intercepting features, Optical Diffraction Radiation (ODR) is considered as one of the most promising candidates to measure the transverse beam size and angular divergence. The recent results of our experiment, based on the detection of the ODR angular distribution to measure the electron beam transverse parameters and set up at FLASH (DESY), are presented. A thin stainless steel mask has been installed at 45° with respect to the DR target and normally to the beam propagation to reduce the contribution...
Diffraction Radiation is receiving ever more consideration as a nonintercepting diagnostic tool. On ...
Extremely low emittance high current beam is required for the accelerators of the next generation su...
The initial demonstrations over the last several years of the use of optical diffraction radiation (...
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 ...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transiti...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transit...
Conventional intercepting transverse electron beam di-agnostics, as the one based on Optical Transit...
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...
Transverse electron beam size measurements are required in order to determine the transverse emittan...
The characterization of the transverse phase space of electron beams with high charge density and hi...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
Conventional intercepting transverse electron beam diagnostics, e.g. based on Optical Transition Ra...
Diffraction Radiation is receiving ever more consideration as a nonintercepting diagnostic tool. On ...
Extremely low emittance high current beam is required for the accelerators of the next generation su...
The initial demonstrations over the last several years of the use of optical diffraction radiation (...
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 ...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transiti...
Conventional intercepting transverse electron beam diagnostics, as the one based on Optical Transit...
Conventional intercepting transverse electron beam di-agnostics, as the one based on Optical Transit...
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...
Transverse electron beam size measurements are required in order to determine the transverse emittan...
The characterization of the transverse phase space of electron beams with high charge density and hi...
In recent years, the use of diffraction radiation (DR), emitted when a charged particle beam passes ...
Conventional intercepting transverse electron beam diagnostics, e.g. based on Optical Transition Ra...
Diffraction Radiation is receiving ever more consideration as a nonintercepting diagnostic tool. On ...
Extremely low emittance high current beam is required for the accelerators of the next generation su...
The initial demonstrations over the last several years of the use of optical diffraction radiation (...