Linear colliders offer unique opportunities to study gamma-gamma (gg), gamma-electron (ge) interactions. Using the laser backscattering method one can obtain gg, ge colliding beams with an energy and luminosity comparable to that in e+e- collisions. This work is a part of the Conceptual Design of TESLA/SBLC linear colliders describing a second interaction region for gg, ge collisions. We consider here possible physics in high energy gg, ge collisions, e -> g conversion, requirements to lasers, collision schemes, attainable luminosities, backgrounds, possible lasers, optics at the interaction region and other associated problems
Linear colliders oer unique opportunities to study high energy photon-photon collisions obtained usi...
This report presents a review of the studies made in the working group on gamma gamma and e gamma ph...
High energy photon - photon collisions can be achieved by adding high average power short-pulse lase...
Linear colliders offer unique opportunities to study gamma-gamma (gg), gamma-electron (ge) interacti...
Linear colliders offer unique opportunities to study gamma-gamma (gg), gamma-electron (ge) interacti...
Photon colliders (gamma-gamma, gamma-electron) are based on backward Compton scattering of laser lig...
High energy photon colliders (gammagamma,gammae) are based on e(-)e(-) linear colliders where high e...
TESLA is designed as an electron-positron linear collider (LC) based on super-conducting technology....
Intense laser beams may be backscattered from the converging electron beams of a linear collider to ...
Gamma-gamma colliders make intense beams of gamma rays and have them collide so as to make elementar...
High energy photon colliders (gamma-gamma, gamma-electron) based on backward Compton scattering of l...
High energy photon colliders $(\gamma\gamma,\gamma e)$ are based on $e^- e^-$ linear colliders where...
High energy photon colliders (γγ,γe) are based on e-e- linear colliders where high energy photons ar...
Recent developments in linear collider and laser technology should make it possible to construct an ...
This report presents conceptual project of an FEL based 2 250 GeV gamma-gamma collider at TESLA-500...
Linear colliders oer unique opportunities to study high energy photon-photon collisions obtained usi...
This report presents a review of the studies made in the working group on gamma gamma and e gamma ph...
High energy photon - photon collisions can be achieved by adding high average power short-pulse lase...
Linear colliders offer unique opportunities to study gamma-gamma (gg), gamma-electron (ge) interacti...
Linear colliders offer unique opportunities to study gamma-gamma (gg), gamma-electron (ge) interacti...
Photon colliders (gamma-gamma, gamma-electron) are based on backward Compton scattering of laser lig...
High energy photon colliders (gammagamma,gammae) are based on e(-)e(-) linear colliders where high e...
TESLA is designed as an electron-positron linear collider (LC) based on super-conducting technology....
Intense laser beams may be backscattered from the converging electron beams of a linear collider to ...
Gamma-gamma colliders make intense beams of gamma rays and have them collide so as to make elementar...
High energy photon colliders (gamma-gamma, gamma-electron) based on backward Compton scattering of l...
High energy photon colliders $(\gamma\gamma,\gamma e)$ are based on $e^- e^-$ linear colliders where...
High energy photon colliders (γγ,γe) are based on e-e- linear colliders where high energy photons ar...
Recent developments in linear collider and laser technology should make it possible to construct an ...
This report presents conceptual project of an FEL based 2 250 GeV gamma-gamma collider at TESLA-500...
Linear colliders oer unique opportunities to study high energy photon-photon collisions obtained usi...
This report presents a review of the studies made in the working group on gamma gamma and e gamma ph...
High energy photon - photon collisions can be achieved by adding high average power short-pulse lase...