Paper
8 November 2001 Flux gain for next-generation neutron-scattering instruments resulting from improved supermirror performance
Christine Rehm, Michael M. Agamalian
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Abstract
Next-generation spallation neutron source facilities will offer instruments with unprecedented capabilities through simultaneous enhancement of source power and usage of advanced optical components. The Spallation Neutron Source (SNS), already under construction at Oak Ridge National Laboratory and scheduled to be completed by 2006, will provide greater than an order of magnitude more effective source flux than current state-of-the-art facilities, including the most advanced research reactors. An additional order of magnitude gain is expected through the use of new optical devices and instrumentation concepts. Many instrument designs require supermirror (SM) neutron guides with very high critical angles for total reflection. In this contribution, we will discuss how the performance of modern neutron scattering instruments depends on the efficiency of these supermirrors. We outline ideas for enhancing the performance of the SM coatings, particularly for improving the reflectivity at the position of the critical wave vector transfer. A simulation program has been developed which allows different approaches for SM designs to be studied. Possible instrument performance gains are calculated for the example of the SNS reflectometer.
© (2001) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Christine Rehm and Michael M. Agamalian "Flux gain for next-generation neutron-scattering instruments resulting from improved supermirror performance", Proc. SPIE 4509, Neutron Optics, (8 November 2001); https://doi.org/10.1117/12.448076
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Cited by 3 scholarly publications.
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KEYWORDS
Reflectivity

Nickel

Scattering

Reflection

Interfaces

Reflectometry

Mirrors

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