The aim of the CLIC Test Facility CTF3 at CERN is to demonstrate the feasibility of the key points of the two-beam acceleration based compact linear collider study. In particular, it addresses the efficient generation of a drive beam with the appropriate time structure of the electron bunches in order to produce high power rf pulses at a frequency of 30 GHz. This time structure requires a high bunch repetition frequency. It is obtained by successive injections of bunch trains into an isochronous ring using transversely deflecting rf structures. The major goal of the now completed first phase of the CTF3 was to achieve the bunch train combination at low charge. In this paper, we give a description of the project and summarize the experimenta...
The CLIC Test Facility (CTF3) was built to demonstrate the feasibility of the CLIC two beam accelera...
The objective of the CLIC Test Facility CTF3, built at CERN by an international collaboration, is to...
The Compact Linear Collider international collaboration is pursuing an extensive R&D program towards...
The aim of the CLIC Test Facility CTF3 at CERN is to demonstrate the feasibility of key points of th...
The aim of the CLIC Test Facility CTF3 at CERN is to prove the feasibility of key issues of the two-...
The CLIC Test Facility 3 (CTF3) is being built and com-missioned by an international collaboration t...
In the framework of the CLIC (Compact Linear Collider) RF power source studies, the scheme of electr...
The CLIC Test Facility 3 (CTF3) is being built and commissioned by an international collaboration to...
In the framework of the CLIC RF power source studies, the feasibility of the electron bunch train co...
The Preliminary Phase of the new CLIC Test Facility CTF3 consists of a low-charge demonstration of t...
The feasibility of the CLIC novel scheme of two-beam acceleration was extensively tested in the CTF3...
In the framework of the new Compact Linear Collider (CLIC) Test Facility CTF3, it is planned to perf...
The CLIC (Compact Linear Collider) RF power source is based on a new scheme of electron pulse compre...
The unique CLIC TEST Facility (CTF3) has been built more than a decade ago to demonstrate the feasib...
The second phase of the Compact LInear Collider (CLIC) Test Facility (CTF II) at CERN has demon-stra...
The CLIC Test Facility (CTF3) was built to demonstrate the feasibility of the CLIC two beam accelera...
The objective of the CLIC Test Facility CTF3, built at CERN by an international collaboration, is to...
The Compact Linear Collider international collaboration is pursuing an extensive R&D program towards...
The aim of the CLIC Test Facility CTF3 at CERN is to demonstrate the feasibility of key points of th...
The aim of the CLIC Test Facility CTF3 at CERN is to prove the feasibility of key issues of the two-...
The CLIC Test Facility 3 (CTF3) is being built and com-missioned by an international collaboration t...
In the framework of the CLIC (Compact Linear Collider) RF power source studies, the scheme of electr...
The CLIC Test Facility 3 (CTF3) is being built and commissioned by an international collaboration to...
In the framework of the CLIC RF power source studies, the feasibility of the electron bunch train co...
The Preliminary Phase of the new CLIC Test Facility CTF3 consists of a low-charge demonstration of t...
The feasibility of the CLIC novel scheme of two-beam acceleration was extensively tested in the CTF3...
In the framework of the new Compact Linear Collider (CLIC) Test Facility CTF3, it is planned to perf...
The CLIC (Compact Linear Collider) RF power source is based on a new scheme of electron pulse compre...
The unique CLIC TEST Facility (CTF3) has been built more than a decade ago to demonstrate the feasib...
The second phase of the Compact LInear Collider (CLIC) Test Facility (CTF II) at CERN has demon-stra...
The CLIC Test Facility (CTF3) was built to demonstrate the feasibility of the CLIC two beam accelera...
The objective of the CLIC Test Facility CTF3, built at CERN by an international collaboration, is to...
The Compact Linear Collider international collaboration is pursuing an extensive R&D program towards...