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Rapid aberration correction for diffractive X-ray optics by additive manufacturing: erratum.

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    This erratum corrects the numerical aperture of multilayer Laue lenses used in a previous study. The correction ensures accuracy for future research in optics and photonics.

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    Area of Science:

    • Optics
    • Photonics
    • Materials Science

    Background:

    • Accurate optical parameters are crucial for experimental reproducibility and data interpretation.
    • Previous publication reported specific optical characteristics of multilayer Laue lenses.
    • Numerical aperture is a key parameter influencing light-gathering ability and resolution.

    Purpose of the Study:

    • To correct a factual error in a previously published paper.
    • To provide the accurate numerical aperture value for multilayer Laue lenses.
    • To ensure the scientific integrity and reliability of the published research.

    Main Methods:

    • Identification of the discrepancy in the reported numerical aperture value.
    • Verification of the correct numerical aperture through re-calculation or re-measurement.
    • Formal documentation of the correction as an erratum.

    Main Results:

    • The numerical aperture of the multilayer Laue lenses has been accurately stated.
    • The corrected value supersedes the previously published numerical aperture.
    • This correction enhances the precision of the experimental setup described.

    Conclusions:

    • The erratum rectifies a critical parameter in the original study.
    • Accurate reporting of optical properties is essential for the scientific community.
    • This correction facilitates correct interpretation and application of the prior research findings.