Electron-positron collider VEPP-2000 with beam energy up to 1 GeV is under commissioning at Budker Institute. This paper presents magnetic elements of the storage ring including 13T focusing superconducting solenoids in interaction regions. Features of magnet elements design and magnetic measurements results are given together with comparison to previously calculated data. VEPP-2000 PROJECT CONCEPT Since the end of 1974 the e+e- collider VEPP-2M in Novosibirsk has been successfully running in the c.m. energy range from threshold of hadron production up to 1.4 GeV. The integrated luminosity of about 74pb-1 was collected with two modern detectors SND and CMD-
The VEPP-4M electron-positron collider is now op-erating for a high-energy physics experiments in th...
The superconducting magnet system for the ATLAS Detector for the Large Hadron Collider at CERN is un...
The Cryogenic Magnetic Detector (CMD-2) and Spherical Neutral Detector (SND) operated at the VEPP-2M...
Development of different kind of accelerator technologies is a base of the Novosibirsk Institute phy...
Since December 2010 the CMD-3 and SND detectors detectors collect data at the VEPP-2000 electron-pos...
This paper presents results of more than thirty years long study of settlements and deformations of ...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
In early 2014 a design study started at CERN for a Future Circular Collider. A new tunnel with a cir...
In early 2014 a design study started at CERN for a Future Circular Collider. A new tunnel with a cir...
The development of superconductors for magnet applications has received a strong boost from the High...
In the scope of the Future Circular electron positron Collider study (FCC-ee), the IDEA detector is ...
Two experiments, CMD-3 and SND, collected over 100 pb−1 in total taking data in 2011-2013 at the VEP...
The VEPP-4M electron-positron collider is now op-erating for a high-energy physics experiments in th...
The superconducting magnet system for the ATLAS Detector for the Large Hadron Collider at CERN is un...
The Cryogenic Magnetic Detector (CMD-2) and Spherical Neutral Detector (SND) operated at the VEPP-2M...
Development of different kind of accelerator technologies is a base of the Novosibirsk Institute phy...
Since December 2010 the CMD-3 and SND detectors detectors collect data at the VEPP-2000 electron-pos...
This paper presents results of more than thirty years long study of settlements and deformations of ...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
International audienceIn early 2014 a design study started at CERN for a Future Circular Collider. A...
In early 2014 a design study started at CERN for a Future Circular Collider. A new tunnel with a cir...
In early 2014 a design study started at CERN for a Future Circular Collider. A new tunnel with a cir...
The development of superconductors for magnet applications has received a strong boost from the High...
In the scope of the Future Circular electron positron Collider study (FCC-ee), the IDEA detector is ...
Two experiments, CMD-3 and SND, collected over 100 pb−1 in total taking data in 2011-2013 at the VEP...
The VEPP-4M electron-positron collider is now op-erating for a high-energy physics experiments in th...
The superconducting magnet system for the ATLAS Detector for the Large Hadron Collider at CERN is un...
The Cryogenic Magnetic Detector (CMD-2) and Spherical Neutral Detector (SND) operated at the VEPP-2M...