A proposed RF scheme based on correction cavity chain and storage cavity (CC-SC scheme) for klystron-based CLIC has the ability to generate flat output pulses. In the scheme, the correction cavity chain modulates the amplitude of the input pulse, while the storage cavity compresses the amplitude-modulated pulse. Resonant cavities of the correction cavity chain are of a relatively low unloaded quality factor and of small size, which results in the compactness of the RF scheme. The first prototype of a correction cavity chain was fabricated and cold tested at Tsinghua University and then delivered to CERN for high power test. Both the results of the cold and high power tests show that the correction cavity chain is of good performance. Feasib...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
The compact linear collider (CLIC) requires a crab cavity to align bunches prior to collision. The b...
A compact X-band two-stage rf pulse compression system has been successfully designed, fabricated, a...
A compact X-band correction cavity chain (CC) has been successfully designed, fabricated and high po...
At the CERN linear electron accelerators LIL and CTF, the peak RF power from the 3GHz-klystrons was ...
We present an X-band high-power pulse compression system for a klystron-based compact linear collide...
A new type of RF compression scheme was proposed by the authors for the C-band RF system in the e+e-...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
RF design of a crab cavity (2π/3, 11.9942 GHz) for the Compact Linear Collide (CLIC) is presented. A...
A new X-band high-power rotating mode SLAC energy doubler (SLED)-type rf pulse compressor is propose...
The CLIC project requests new type of RF sources for the high power conditioning of the accelerating...
The X-band RF Pulse Compressor (PC) with Correction Cavities was selected as a base line option for ...
The main beam of the Compact LInear Collider (CLIC) requires the beam trajectory to be measured with...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
The compact linear collider (CLIC) requires a crab cavity to align bunches prior to collision. The b...
A compact X-band two-stage rf pulse compression system has been successfully designed, fabricated, a...
A compact X-band correction cavity chain (CC) has been successfully designed, fabricated and high po...
At the CERN linear electron accelerators LIL and CTF, the peak RF power from the 3GHz-klystrons was ...
We present an X-band high-power pulse compression system for a klystron-based compact linear collide...
A new type of RF compression scheme was proposed by the authors for the C-band RF system in the e+e-...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
RF design of a crab cavity (2π/3, 11.9942 GHz) for the Compact Linear Collide (CLIC) is presented. A...
A new X-band high-power rotating mode SLAC energy doubler (SLED)-type rf pulse compressor is propose...
The CLIC project requests new type of RF sources for the high power conditioning of the accelerating...
The X-band RF Pulse Compressor (PC) with Correction Cavities was selected as a base line option for ...
The main beam of the Compact LInear Collider (CLIC) requires the beam trajectory to be measured with...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
The CLIC RF frequency has been changed in 2008 from the initial 30 GHz to the European X-band 11.994...
The compact linear collider (CLIC) requires a crab cavity to align bunches prior to collision. The b...
A compact X-band two-stage rf pulse compression system has been successfully designed, fabricated, a...