An unprecedented amount of energy will be stored in the circulating beams of LHC. The loss of even a very small fraction of a beam may induce a quench in the superconducting magnets or cause physical damage to machine components. A fast (one turn) loss of 3 . 10-9 and a constant loss of 3 . 10-12 times the nominal beam intensity can quench a dipole magnet. A fast loss of 3 . 10-6 times nominal beam intensity can damage a magnet. The stored energy in the LHC beam is a factor of 200 (or more) higher than in existing hadron machines with superconducting magnets (HERA, TEVATRON, RHIC), while the quench levels of the LHC magnets are a factor of about 5 to 20 lower than the quench levels of these machines. To comply with these requirements the de...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
The LHC beam loss monitor (BLM) system, primarily designed for proton operation, will survey particl...
AbstractThe energy stored in the nominal LHC beams is two times 362MJ, 100 times the energy of the T...
CERN's Large Hadron Collider (LHC) is a proton collider with injection energy of 450 GeV and collisi...
The beam loss monitoring system is one of the most critical elements for the protection of the LHC. ...
The beam loss monitoring (BLM) system [1] of the LHC is one of the most critical elements for the pr...
During the LHC operation, energies up to 360 MJ will be stored in each proton beam and over 10 GJ in...
AbstractThe energy stored in the nominal LHC beams is two times 362MJ, 100 times the energy of the T...
CERN's Large Hadron Collider will store an unprecedented amount of energy in its circulating beams. ...
Over the whole circumference of the LHC, Beam Loss Monitors (BLM) will be needed for a continuous su...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
The Large Hadron Collider (LHC) has a nominal energy of 362MJ stored in each of its two counter-rota...
The application of superconducting materials in the field of high energy accelerator physics not onl...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
The LHC beam loss monitor (BLM) system, primarily designed for proton operation, will survey particl...
AbstractThe energy stored in the nominal LHC beams is two times 362MJ, 100 times the energy of the T...
CERN's Large Hadron Collider (LHC) is a proton collider with injection energy of 450 GeV and collisi...
The beam loss monitoring system is one of the most critical elements for the protection of the LHC. ...
The beam loss monitoring (BLM) system [1] of the LHC is one of the most critical elements for the pr...
During the LHC operation, energies up to 360 MJ will be stored in each proton beam and over 10 GJ in...
AbstractThe energy stored in the nominal LHC beams is two times 362MJ, 100 times the energy of the T...
CERN's Large Hadron Collider will store an unprecedented amount of energy in its circulating beams. ...
Over the whole circumference of the LHC, Beam Loss Monitors (BLM) will be needed for a continuous su...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
The Large Hadron Collider (LHC) has a nominal energy of 362MJ stored in each of its two counter-rota...
The application of superconducting materials in the field of high energy accelerator physics not onl...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
An energy of 362 MJ is stored in each of the two LHC proton beams for nominal beam parameters. This ...
The LHC beam loss monitor (BLM) system, primarily designed for proton operation, will survey particl...