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- W2022935610 abstract "We present a new theory for the computation of Super-Mirror stacks, using accurate formulas derived from the classical optics field. Approximations are introduced into the computation, but at a later stage than existing theories, providing a more rigorous treatment of the problem. The final result is a continuous thickness stack, whose properties can be determined at the outset of the design. We find that the well-known fourth power dependence of number of layers versus maximum angle is (of course) asymptotically correct. We find a formula giving directly the relation between desired reflectance, maximum angle, and number of layers (for a given pair of materials). Note: The author of this article, a classical opticist, has limited knowledge of the Neutron world, and begs forgiveness for any shortcomings, erroneous assumptions and/or misinterpretation of previous authors' work on the subject." @default.
- W2022935610 created "2016-06-24" @default.
- W2022935610 creator A5035937815 @default.
- W2022935610 date "2001-11-08" @default.
- W2022935610 modified "2023-09-27" @default.
- W2022935610 title "<title>Neutron supermirrors: an accurate theory for layer thickness computation</title>" @default.
- W2022935610 doi "https://doi.org/10.1117/12.448075" @default.
- W2022935610 hasPublicationYear "2001" @default.
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