papers

Publications (7)

hep-ex2024

The LHCb upgrade I

LHCb collaboration, R. Aaij, A. S. W. Abdelmotteleb +1305

The LHCb upgrade represents a major change of the experiment. The detectors have been almost completely renewed to allow running at an instantaneous luminosity five times larger th…

cond-mat.mtrl-sci2016

An upper limit on the lateral vacancy diffusion length in diamond

J. O. Orwa, K. Ganesan, J. Newnham +9

Ion implantation is widely used to modify the structural, electrical and optical properties of materials. By appropriate masking, this technique can be used to define nano- and mic…

physics.acc-ph2013

Characterisation of the muon beams for the Muon Ionisation Cooling Experiment

The MICE Collaboration, D. Adams, D. Adey +141

A novel single-particle technique to measure emittance has been developed and used to characterise seventeen different muon beams for the Muon Ionisation Cooling Experiment (MICE).…

physics.acc-ph2013

MICE: the Muon Ionization Cooling Experiment. Step I: First Measurement of Emittance with Particle Physics Detectors

U. Bravar, M. Bogomilov, Y. Karadzhov +144

The Muon Ionization Cooling Experiment (MICE) is a strategic R&D project intended to demonstrate the only practical solution to providing high brilliance beams necessary for a neut…

physics.ins-det2015

Electron-Muon Ranger: performance in the MICE Muon Beam

D. Adams, A. Alekou, M. Apollonio +151

The Muon Ionization Cooling Experiment (MICE) will perform a detailed study of ionization cooling to evaluate the feasibility of the technique. To carry out this program, MICE requ…

physics.acc-ph2017

Design and expected performance of the MICE demonstration of ionization cooling

MICE Collaboration, M. Bogomilov, R. Tsenov +129

Muon beams of low emittance provide the basis for the intense, well-characterised neutrino beams necessary to elucidate the physics of flavour at a neutrino factory and to provide…

physics.ins-det2016

Pion contamination in the MICE muon beam

D. Adams, A. Alekou, M. Apollonio +142

The international Muon Ionization Cooling Experiment (MICE) will perform a systematic investigation of ionization cooling with muon beams of momentum between 140 and 240\,MeV/c at…