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  2024 roadmap on magnetic microscopy techniques and their applications in materials science

Christensen, D. V., Staub, U., Devidas, T. R., Kalisky, B., Nowack, K. C., Webb, J. L., et al. (2024). 2024 roadmap on magnetic microscopy techniques and their applications in materials science. Journal of Physics: Materials, 7(3): 032501, pp. 1-83. doi:10.1088/2515-7639/ad31b5.

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 Creators:
Christensen , D. V.1, Author
Staub, U.1, Author
Devidas, T. R.1, Author
Kalisky, B.1, Author
Nowack, K. C.1, Author
Webb, J. L.1, Author
Andersen, U. L.1, Author
Huck, A.1, Author
Broadway, D. A.1, Author
Wagner, K.1, Author
Maletinsky, P.1, Author
van der Sar, T.1, Author
Du, C. R.1, Author
Yacoby, A.1, Author
Collomb, D.1, Author
Bending, S.1, Author
Oral, A.1, Author
Hug, H. J.1, Author
Mandru, A.-O.1, Author
Neu, V1, Author
Schumacher, H. W.1, AuthorSievers, S.1, AuthorSaito, H.1, AuthorKhajetoorians, A. A.1, AuthorHauptmann, N.1, AuthorBaumann, S.1, AuthorEichler, A.1, AuthorDegen, C. L.1, AuthorMccord, J.1, AuthorVogel, M.1, AuthorFiebig, M.1, AuthorFischer, P.1, AuthorHierro-Rodriguez, A.1, AuthorFinizio, S.1, AuthorDhesi, S. S.1, AuthorDonnelly, C.2, Author           Buettner, F.1, AuthorKfir, O.1, AuthorHu, W.1, AuthorZayko, S.1, AuthorEisebitt, S.1, AuthorPfau, B.1, AuthorFroemter, R.1, AuthorKlaeui, M.1, AuthorYasin, F. S.1, AuthorMcmorran, B. J.1, AuthorSeki, S.1, AuthorYu, X.1, AuthorLubk, A.1, AuthorWolf, D.1, AuthorPryds, N.1, AuthorMakarov, D.1, AuthorPoggio, M.1, Author more..
Affiliations:
1External Organizations, ou_persistent22              
2Spin3D: Three-Dimensional Magnetic Systems, Max Planck Institute for Chemical Physics of Solids, Max Planck Society, ou_3385536              

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 Abstract: Considering the growing interest in magnetic materials for unconventional computing, data storage, and sensor applications, there is active research not only on material synthesis but also characterisation of their properties. In addition to structural and integral magnetic characterisations, imaging of magnetisation patterns, current distributions and magnetic fields at nano- and microscale is of major importance to understand the material responses and qualify them for specific applications. In this roadmap, we aim to cover a broad portfolio of techniques to perform nano- and microscale magnetic imaging using superconducting quantum interference devices, spin centre and Hall effect magnetometries, scanning probe microscopies, x-ray- and electron-based methods as well as magnetooptics and nanoscale magnetic resonance imaging. The roadmap is aimed as a single access point of information for experts in the field as well as the young generation of students outlining prospects of the development of magnetic imaging technologies for the upcoming decade with a focus on physics, materials science, and chemistry of planar, three-dimensional and geometrically curved objects of different material classes including two-dimensional materials, complex oxides, semi-metals, multiferroics, skyrmions, antiferromagnets, frustrated magnets, magnetic molecules/nanoparticles, ionic conductors, superconductors, spintronic and spinorbitronic materials.

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Language(s): eng - English
 Dates: 2024-06-132024-06-13
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: ISI: 001248968300001
DOI: 10.1088/2515-7639/ad31b5
 Degree: -

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Title: Journal of Physics: Materials
  Other : JPhys Materials
  Abbreviation : J. Phys. Mater.
Source Genre: Journal
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Publ. Info: Bristol : Institute of Physics Publishing
Pages: - Volume / Issue: 7 (3) Sequence Number: 032501 Start / End Page: 1 - 83 Identifier: CoNE: https://pure.mpg.de/cone/journals/resource/2515-7639