We report progress achieved in crystal-assisted slow extraction and collimation of the 70-GeV proton beam in the U-70 accelerator at IHEP-Protvino. We recently obtained an extraction efficiency of 85.3±2.8% for a beam of ∼1012 proton directed towards very short crystals of ∼2 mm length in spills of ∼2 s duration. The experimental data follow very well the theoretical predictions obtained with Monte Carlo simulations. This success is important to devise a more efficient use of the U-70 accelerator in Protvino and suggests a possible way of implementingcrystal-assisted slow extraction and collimation in other machines, such as the Tevatron, RHIC, the AGS, the SNS, COSY, and the LHC
In the accelerator applications of slow extraction for High Energy Physics (HEP), one of the prime c...
The design and manufacturing details of a new crystal deflector for proton beams are reported. The t...
Bent crystal situated in a circulating beam can serve for ef-ficient slow extraction or active colli...
Recent IHEP Protvino experiments show efficiencies of crystal-assisted slow extraction and collimati...
Using channeling in a 5-mm crystal with bending angle of 0.65 mrad, a record high efficiency, over 6...
Silicon crystal was channeling and extracting 70-GeV protons from the U-70 accelerator with efficien...
Using channeling in a 5-mm crystal with bending angle of 0.65 mrad, a record high efficiency, over 6...
This paper presents an overview of the results obtained at the U-70 accelerator of IHEP to use bent ...
The new results of using short (2-4mm) bent crystals for extraction and collimation of proton beam a...
The new results of using short (2-4mm) bent crystals for extraction and collimation of proton beam...
IHEP Protvino has pioneered the wide practical use of bent crystals as optical elements in high-ener...
The design and performance of a novel crystal deflector for proton beams are reported. A silicon c...
The radical efficiency increase of accelerator beam extraction by means of bent crystals is reache...
The efficiency of the extraction of a beam from an accelerator is radically improved owing to the ap...
Bent crystal situated in a circulating beam can serve for efficient slow extraction or active collim...
In the accelerator applications of slow extraction for High Energy Physics (HEP), one of the prime c...
The design and manufacturing details of a new crystal deflector for proton beams are reported. The t...
Bent crystal situated in a circulating beam can serve for ef-ficient slow extraction or active colli...
Recent IHEP Protvino experiments show efficiencies of crystal-assisted slow extraction and collimati...
Using channeling in a 5-mm crystal with bending angle of 0.65 mrad, a record high efficiency, over 6...
Silicon crystal was channeling and extracting 70-GeV protons from the U-70 accelerator with efficien...
Using channeling in a 5-mm crystal with bending angle of 0.65 mrad, a record high efficiency, over 6...
This paper presents an overview of the results obtained at the U-70 accelerator of IHEP to use bent ...
The new results of using short (2-4mm) bent crystals for extraction and collimation of proton beam a...
The new results of using short (2-4mm) bent crystals for extraction and collimation of proton beam...
IHEP Protvino has pioneered the wide practical use of bent crystals as optical elements in high-ener...
The design and performance of a novel crystal deflector for proton beams are reported. A silicon c...
The radical efficiency increase of accelerator beam extraction by means of bent crystals is reache...
The efficiency of the extraction of a beam from an accelerator is radically improved owing to the ap...
Bent crystal situated in a circulating beam can serve for efficient slow extraction or active collim...
In the accelerator applications of slow extraction for High Energy Physics (HEP), one of the prime c...
The design and manufacturing details of a new crystal deflector for proton beams are reported. The t...
Bent crystal situated in a circulating beam can serve for ef-ficient slow extraction or active colli...