The HIE-ISOLDE superconducting linac started opera- tions at CERN in 2015 with a first cryomodule hosting five superconducting quarter wave resonators (QWR). These cavities are based on the Nb/Cu technology. In time, two more cryomodules have been assembled, installed and commissioned on line, bringing the energy reach for the heaviest ions (A/q=4.5) up to 7.5 MeV/u. In 2017, while the first three cryomodules were prepared for the physics run, six more cavities were produced of which five will be installed in a fourth cryomodule. With this, the high beta section of the linac will be complete and the energy will reach 10 MeV/u for A/q=4.5. In this paper we review the experience and lessons learned during the construction of HIE-ISOLDE, along...
The HIE-ISOLDE project represents a major upgrade of the ISOLDE nuclear facility with a mandate to s...
The superconducting linac booster for the HIE ISOLDE project, in operation at CERN, is based on NB/C...
The HIE-ISOLDE project represents a major upgrade of the ISOLDE facility with a mandate to significa...
The assembly of the first two cryomodules (CM1 and CM2) of the new superconducting linear accelerato...
The first phase of the HIE-ISOLDE project aims to increase the energy of the existing REX ISOLDE fac...
The HIE-ISOLDE upgrade project at CERN aims at increasing the energy of radioactive beams from 3MeV/...
In the context of the HIE-ISOLDE linac upgrade at CERN, the phase 1 planned to boost the energy of t...
The High Intensity and Energy ISOLDE (HIE-ISOLDE) project is a major upgrade of the existing ISOLDE ...
The major upgrade of the energy and intensity of the existing ISOLDE and REX-ISOLDE facilities at CE...
The HIE-ISOLDE project aims at increasing the energy of the radioactive beams (RIB) of REX-ISOLDE fr...
The HIE ISOLDE project aims at increasing the energy of the radioactive ion beams of the existing RE...
The HIE-ISOLDE post accelerator consists of 4 cryomodules with 5 niobium-coated Quarter Wave Resonat...
A new superconducting LINAC will be constructed in the next years at CERN for the increase in energy...
The HIE ISOLDE project [1] reached a major milestone in October 2015, with the start of the first ph...
A new superconducting LINAC will be constructed in the next years at CERN for the increase in energy...
The HIE-ISOLDE project represents a major upgrade of the ISOLDE nuclear facility with a mandate to s...
The superconducting linac booster for the HIE ISOLDE project, in operation at CERN, is based on NB/C...
The HIE-ISOLDE project represents a major upgrade of the ISOLDE facility with a mandate to significa...
The assembly of the first two cryomodules (CM1 and CM2) of the new superconducting linear accelerato...
The first phase of the HIE-ISOLDE project aims to increase the energy of the existing REX ISOLDE fac...
The HIE-ISOLDE upgrade project at CERN aims at increasing the energy of radioactive beams from 3MeV/...
In the context of the HIE-ISOLDE linac upgrade at CERN, the phase 1 planned to boost the energy of t...
The High Intensity and Energy ISOLDE (HIE-ISOLDE) project is a major upgrade of the existing ISOLDE ...
The major upgrade of the energy and intensity of the existing ISOLDE and REX-ISOLDE facilities at CE...
The HIE-ISOLDE project aims at increasing the energy of the radioactive beams (RIB) of REX-ISOLDE fr...
The HIE ISOLDE project aims at increasing the energy of the radioactive ion beams of the existing RE...
The HIE-ISOLDE post accelerator consists of 4 cryomodules with 5 niobium-coated Quarter Wave Resonat...
A new superconducting LINAC will be constructed in the next years at CERN for the increase in energy...
The HIE ISOLDE project [1] reached a major milestone in October 2015, with the start of the first ph...
A new superconducting LINAC will be constructed in the next years at CERN for the increase in energy...
The HIE-ISOLDE project represents a major upgrade of the ISOLDE nuclear facility with a mandate to s...
The superconducting linac booster for the HIE ISOLDE project, in operation at CERN, is based on NB/C...
The HIE-ISOLDE project represents a major upgrade of the ISOLDE facility with a mandate to significa...