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April 4, 2026Journal of Synchrotron Radiation0 citationsOpen Access

Microstructure analysis of low electron density contrast metallic multilayers using resonant X-ray reflectivity

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PRP. N. RaoMSM. K. SwamiHSHimanshu Srivastava

Key Points

  • The central aim is to analyze the microstructural properties of metallic multilayers using resonant X-ray reflectivity.
  • Investigated layer properties of Cu/Nb multilayers using RXRR.
  • Deposited multilayers via magnetron sputtering; ten bilayers with varying thicknesses.
  • Conducted X-ray reflectivity measurements at Cu and Nb absorption edges along with conventional methods.
  • Notable differences observed in reflectivity profiles at varying energies.
  • Confirmed that RXRR effectively extracts microstructural information in multilayers with low electron density contrast.
  • Demonstrated enhanced sensitivity of RXRR compared to traditional methods.

Abstract

Resonant X-ray reflectivity (RXRR) was employed to investigate the microstructural properties, such as layer thicknesses, densities and interface widths, of metallic multilayers with low electron density contrast. Cu/Nb multilayers were chosen as a model system to demonstrate the enhanced sensitivity of RXRR. These multilayers, consisting of ten bilayers with varying period thicknesses, were deposited using magnetron sputtering. X-ray reflectivity measurements were performed at the K-absorption edges of both Cu and Nb, as well as using conventional Cu Kα radiation. A pronounced difference was observed between reflectivity profiles acquired at these different energies. The enhanced contrast near the absorption edges enabled an effective means to extract microstructural information. The results demonstrate that RXRR is a powerful technique for characterizing metallic multilayers with low electron density contrast.

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Cite This Study

Rao et al. (2026) studied this question.

synapsesocial.com/papers/69d0ae94659487ece0fa4910https://doi.org/10.1107/s1600577526001827
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