TY - CPAPER AU - Bartosik, M.R. AU - Dehning, B. AU - Eremin, V. AU - Griesmayer, E. AU - Kurfuerst, C. AU - Sapinski, M. AU - Verbitskaya, E. TI - Cryogenic Beam Loss Monitors for the Superconducting Magnets of the LHC J2 - Proc. of IBIC2014 AB - The Beam Loss Monitoring (BLM) detectors close to the interaction points (IP) of the Large Hadron Collider (LHC) are currently located outside the cryostat, far from the superconducting coils of the magnets. In addition to their sensitivity to lost beam particles, they also detect particles coming from the experimental collisions, which do not contribute significantly to the heat deposition in the superconducting coils. In the future, with beams of higher energy and brightness resulting in higher luminosity, distinguishing between these interaction products and dangerous quench-provoking beam losses from the primary proton beams will be challenging. The system can be optimised by locating beam loss monitors as close as possible to the superconducting coils, inside the cold mass of the magnets in superfluid helium at 1.9 K. The dose then measured by such Cryogenic Beam Loss Monitors (CryoBLMs) would more precisely correspond to the real dose deposited in the coil. The candidates under investigation for such detectors are based on silicon and diamond, several of which have now been installed inside the magnets in the LHC tunnel. This contribution will present the mechanical and electrical designs of these systems, as well as the results of their qualification testing. PB - JACoW CY - Geneva, Switzerland SP - 471 EP - 474 KW - detector KW - cryogenics KW - radiation KW - dipole KW - proton DA - 2014/10 PY - 2014 SN - 978-3-95450-141-0 UR - http://jacow.org/IBIC2014/papers/tupd25.pdf ER -