ILL data. Check that these articles from you and your co-proposers are also correctly linked to ILL beam time. During the submission process, you will be asked to include a list of papers published in the
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Pertinence: 10%
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Beam days lost per cycle on ILL & CRG instruments (≈1600 to 2600 days allocated per cycle) Beam days lost per cycle on ILL public instruments (+1000 days allocated per cycle)
Pertinence: 28%
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a smaller amount of beam time compared with ILL-funded instruments (usually 30–50% of the beam time ), we strongly encourage users to apply for these. You may also apply for CRG beam time through the CRG ... user programme since 2024. D3, D9 and IN8 will operate for 50% of the time. ThALES will have less beam time (3 to 4 weeks) because of the H5 ...
Pertinence: 19%
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nuclear wastes or samples Tanks, Casks and Containers, particles Accelerating Cavities, particles Beams Collimators, instrumented Irradiation Devices or Targets, structures or parts of Particles Detectors
Pertinence: 11%
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nuclear wastes or samples Tanks, Casks and Containers, particles Accelerating Cavities, particles Beams Collimators, instrumented Irradiation Devices or Targets, structures or parts of Particles Detectors
Pertinence: 11%
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neutron polarization vector at will, before and after the sample. In the first video the scattered beam polarization vector is antiparrallel to the input polarization which means that the polarization rotates ... which is true for collinear antiferromagnetic samples. Other kinds of magnetic samples modifies the beam polarization in a much complex ...
Pertinence: 24%
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kinds of scientific studies, which depends for example on the energy and flux of the incident neutron beam, polarized neutron capability and the availability of specific sample environments. Backscattering ... high energy resolution using the change in polarization between the incident and scattered neutron beams to measure small energy changes due ...
Pertinence: 21%
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detwinning crystals. Special sticks available from the pool Code Temperature Range (K) Material in the beam Sample Dimensions Ø x height (mm) Sample Dimensions Ø x height (mm) 156ILEF49 1.5 - 320 Al-6082-T6
Pertinence: 14%
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technology for 45 years. ILL operates one of the most intense neutron sources in the world, feeding beams of neutrons to a suite of 40 high-performance instruments. Research conducted at ILL covers a wide
Pertinence: 11%
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on of their configuration. This version permits to simulate intensity and distribution of neutron beam in both real and momentum subspaces at different positions along the TAS beamline. vTAS A Virtual
Pertinence: 14%
