Opportunities for near-surface small-angle neutron scattering to probe magnetic nanostructures within thin-film volumes
- PMID: 40765971
- PMCID: PMC12321037
- DOI: 10.1107/S1600576725005503
Opportunities for near-surface small-angle neutron scattering to probe magnetic nanostructures within thin-film volumes
Abstract
Near-surface small-angle neutron scattering (NS-SANS) is a highly versatile, yet under-utilized, technique in condensed matter research. It addresses the shortcomings of transmission SANS to enable the characterization of nano-structures within extremely small sample volumes in the thin-film limit. NS-SANS stands out in its capacity to resolve 1D, 2D or 3D structural, chemical and magnetic correlations beneath the surfaces of thin films with nanometre resolution. By varying the incident angle above the critical angle of reflection, NS-SANS delivers tuneable depth sensitivity across nano-confined volumes, effectively minimizing noise contributions from substrates while surpassing the surface-sensitive capabilities of grazing-incidence SANS. This perspective highlights the future potential of NS-SANS to study condensed matter thin films and heterostructures, with a special focus on nanoscale magnetic phenomena, such as topological skyrmion lattices, superconducting vortex lattices and chiral domain walls, which are of timely interest to the magnetism and quantum materials communities.
Keywords: grazing-incidence small-angle neutron scattering; magnetism; near-surface small-angle neutron scattering; thin films.
© Grace L. Causer 2025.
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References
-
- Adachi, K., Achiwa, N. & Mekata, M. (1980). J. Phys. Soc. Jpn49, 545–553.
-
- Adams, T., Chacon, A., Wagner, M., Bauer, A., Brandl, G., Pedersen, B., Berger, H., Lemmens, P. & Pfleiderer, C. (2012). Phys. Rev. Lett.108, 237204. - PubMed
-
- Adams, T., Garst, M., Bauer, A., Georgii, R. & Pfleiderer, C. (2018). Phys. Rev. Lett.121, 187205. - PubMed
-
- Amin, O. J., Dal Din, A., Golias, E., Niu, Y., Zakharov, A., Fromage, S. C., Fields, C. J. B., Heywood, S. L., Cousins, R. B., Maccherozzi, F., Krempaský, J., Dil, J. H., Kriegner, D., Kiraly, B., Campion, R. P., Rushforth, A. W., Edmonds, K. W., Dhesi, S. S., Šmejkal, L., Jungwirth, T. & Wadley, P. (2024). Nature636, 348–353. - PMC - PubMed
-
- Bauer, A., Garst, M. & Pfleiderer, C. (2016). Phys. Rev. B93, 235144.
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