In order to understand and optimize the luminosity of the Cornell Electron Storage Ring (CESR), a combined program of accelerator measurements and numerical simulation studies was undertaken during 1985 and early 1986. The results of the investigation of a number of particular subjects are reported: (1) Agreement between the simulated and measured beam current dependence of luminosity near the standard CESR operating point. (2) The effects on luminosity of chromaticity and the pattern of sextupole strengths. (3) The occurrence of asymmetric e+e- beam heights, “beam flipping ” , in both CESR and simulation results. (4) A tune plane scan performed with the simulation,where a factor of two increase in luminosity was predicted at low vertical t...
(CesrTA) program has included extensive measurements of coherent betatron tune shifts for a variety ...
The Cornell Electron-Positron Storage Ring (CESR) operates at 1.9 GeV per beam for high energy physi...
Simulations [l] suggest that in e+e- storage rings co& sions of round beams (equal emittances an...
In 2008 the Cornell Electron/Positron Storage Ring (CESR) was reconfigured from an electron/positron...
The Cornell Electron Storage Ring (CESR) operates with 2 GeV multibunch electron and positron beams ...
In March of 2008, the Cornell Electron Storage Ring (CESR) concluded twenty eight years of colliding...
The International Linear Collider (ILC) is a proposed 500GeV center-of-mass electron/positron collid...
of bunches that collide with a horizontal crossing angle of 2.1 mrad. CESR has achieved a peak lumin...
At the Cornell Electron/positron Storage Ring CESR, a fast luminosity monitor has been implemented[1...
The CLEO-c experiment at the Cornell Electron Storage Ring (CESR) is presently embarking on a multi-...
The Cornell Electron Storage Ring Test Accelerator (CesrTA) program has included extensive measureme...
Measurements of the beam's bunch length in the Cornell Electron-Positron Storage Ring (CESR) have be...
The Cornell Electron Storage Ring Test Accelerator (CesrTA) program has included extensive measureme...
The Cornell Linac is the initial component of the injector for Cornell Electron Storage Ring operati...
The Cornell Electron Storage ring facility CESR oper-ates with 2 GeV multi-bunch electron and positr...
(CesrTA) program has included extensive measurements of coherent betatron tune shifts for a variety ...
The Cornell Electron-Positron Storage Ring (CESR) operates at 1.9 GeV per beam for high energy physi...
Simulations [l] suggest that in e+e- storage rings co& sions of round beams (equal emittances an...
In 2008 the Cornell Electron/Positron Storage Ring (CESR) was reconfigured from an electron/positron...
The Cornell Electron Storage Ring (CESR) operates with 2 GeV multibunch electron and positron beams ...
In March of 2008, the Cornell Electron Storage Ring (CESR) concluded twenty eight years of colliding...
The International Linear Collider (ILC) is a proposed 500GeV center-of-mass electron/positron collid...
of bunches that collide with a horizontal crossing angle of 2.1 mrad. CESR has achieved a peak lumin...
At the Cornell Electron/positron Storage Ring CESR, a fast luminosity monitor has been implemented[1...
The CLEO-c experiment at the Cornell Electron Storage Ring (CESR) is presently embarking on a multi-...
The Cornell Electron Storage Ring Test Accelerator (CesrTA) program has included extensive measureme...
Measurements of the beam's bunch length in the Cornell Electron-Positron Storage Ring (CESR) have be...
The Cornell Electron Storage Ring Test Accelerator (CesrTA) program has included extensive measureme...
The Cornell Linac is the initial component of the injector for Cornell Electron Storage Ring operati...
The Cornell Electron Storage ring facility CESR oper-ates with 2 GeV multi-bunch electron and positr...
(CesrTA) program has included extensive measurements of coherent betatron tune shifts for a variety ...
The Cornell Electron-Positron Storage Ring (CESR) operates at 1.9 GeV per beam for high energy physi...
Simulations [l] suggest that in e+e- storage rings co& sions of round beams (equal emittances an...