Rafal E. Dunin-Borkowski: differenze tra le versioni

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== Ricerca ==
== Ricerca ==
La sua ricerca prevede lo sviluppo di tecniche quantitative nella [[Microscopio elettronico|microscopia elettronica]] e si è recentemente focalizzato sull'uso dell'olografia elettronica fuori asse per studiare i campi magnetici ed elettrostatici in materiali sulla [[nanoscala]], su film sottili e dispositivi.
La sua ricerca prevede lo sviluppo di tecniche quantitative nella [[Microscopio elettronico|microscopia elettronica]] e si è recentemente focalizzato sull'uso dell'olografia elettronica fuori asse per studiare i campi magnetici ed elettrostatici in materiali sulla [[nanoscala]], su film sottili e dispositivi. <ref>{{Cita pubblicazione|autore=Midgley|nome=P. A.|wkautore=Paul Midgley|autore2=Dunin-Borkowski|nome2=R. E.|wkautore2=Rafal E. Dunin-Borkowski|anno=2009|titolo=Electron tomography and holography in materials science|rivista=Nature Materials|volume=8|numero=4|pp=271–80|doi=10.1038/nmat2406|bibcode=2009NatMa...8..271M|PMID=19308086}}</ref> <ref>{{Cita pubblicazione|autore=Dunin-Borkowski|nome=R. E.|autore2=Kasama|autore3=Wei|nome2=T.|nome3=A.|anno=2004|titolo=Off-axis electron holography of magnetic nanowires and chains, rings, and planar arrays of magnetic nanoparticles|rivista=Microscopy Research and Technique|volume=64|numero=5–6|pp=390–402|doi=10.1002/jemt.20098|PMID=15549694}}</ref> <ref>{{Cita pubblicazione|autore=Hÿtch|nome=M.|autore2=Dunin-Borkowski|autore3=Scheinfein|nome2=R.|nome3=M.|anno=2003|titolo=Vortex flux channeling in magnetic nanoparticle chains|rivista=Physical Review Letters|volume=91|numero=25|p=257207|doi=10.1103/PhysRevLett.91.257207|bibcode=2003PhRvL..91y7207H|PMID=14754151}}</ref> <ref>{{Cita pubblicazione|autore=Harrison|nome=R. J.|autore2=Dunin-Borkowski|autore3=Putnis|nome2=R. E.|nome3=A.|anno=2002|titolo=Direct imaging of nanoscale magnetic interactions in minerals|rivista=Proceedings of the National Academy of Sciences|volume=99|numero=26|pp=16556–61|doi=10.1073/pnas.262514499|bibcode=2002PNAS...9916556H|PMID=12482930}}</ref> <ref>{{Cita pubblicazione|autore=Meyer|nome=R. R.|anno=2000|titolo=Discrete atom imaging of one-dimensional crystals formed within single-walled carbon nanotubes|rivista=Science|volume=289|numero=5483|pp=1324–1326|doi=10.1126/science.289.5483.1324|bibcode=2000Sci...289.1324M|PMID=10958773}}</ref> <ref>{{Cita pubblicazione|autore=McCartney|nome=M. R.|anno=1999|titolo=Origin of magnetization decay in spin-dependent tunnel junctions|rivista=Science|volume=286|numero=5443|pp=1337–1340|doi=10.1126/science.286.5443.1337|PMID=10558984}}</ref> <ref>{{Cita pubblicazione|autore=Dunin-Borkowski|nome=R. E.|anno=1998|titolo=Magnetic microstructure of magnetotactic bacteria by electron holography|rivista=Science|volume=282|numero=5395|pp=1868–1870|doi=10.1126/science.282.5395.1868|bibcode=1998Sci...282.1868D|url=https://digitalcommons.calpoly.edu/cgi/viewcontent.cgi?article=1171&context=phy_fac}}</ref>
<ref>
{{cite journal
| last1 = Zheng
| first1 = F.
| last2 = Rybakov
| first2 = F. N.
| last3 = Borisov
| first3 = A. B.
| last4 = Song
| first4 = D.
| last5 = Wang
| first5 = S.
| last6 = Li
| first6 = Z. A.
| last7 = Du
| first7 = H.
| last8 = Kiselev
| first8 = N. S.
| last9 = Caron
| first9 = J.
| last10 = Kovács
| first10 = A.
| last11 = Tian
| first11 = M.
| last12 = Zhang
| first12 = Y.
| last13 = Blügel
| first13 = S.
| last14 = Dunin-Borkowski
| first14 = R. E.
| authorlink14 = Rafal E. Dunin-Borkowski
| title = Experimental observation of chiral magnetic bobbers in B20-type FeGe
| journal = Nature Nanotechnology
| volume = 13
| issue = 6
| pages = 451–455
| date = June 2018
| pmid = 29632400
| doi = 10.1038/s41565-018-0093-3
}}
</ref>
<ref>
{{cite journal
| last1 = Wang
| first1 = Z.
| last2 = Tavabi
| first2 = A. H.
| last3 = Jin
| first3 = L.
| last4 = Rusz
| first4 = J.
| last5 = Tyutyunnikov
| first5 = D.
| last6 = Jiang
| first6 = H.
| last7 = Moritomo
| first7 = Y.
| last8 = Mayer
| first8 = J.
| last9 = Dunin-Borkowski
| first9 = R. E.
| authorlink9 = Rafal E. Dunin-Borkowski
| last10 = Yu
| first10 = R.
| last11 = Zhu
| first11 = j.
| last12 = Zhong
| first12 = X.
| title = Atomic scale imaging of magnetic circular dichroism by achromatic electron microscopy
| journal = Nature Materials
| volume = 17
| issue = 3
| pages = 221–225
| date = March 2018
| pmid = 29403052
| doi = 10.1038/s41563-017-0010-4
}}
</ref>
<ref>
{{cite journal
| last1 = Zheng
| first1 = F.
| last2 = Li
| first2 = H.
| last3 = Wang
| first3 = S.
| last4 = Song
| first4 = D.
| last5 = Jin
| first5 = C.
| last6 = Wei
| first6 = W.
| last7 = Kovács
| first7 = A.
| last8 = Zang
| first8 = J.
| last9 = Tian
| first9 = M.
| last10 = Zhang
| first10 = Y.
| last11 = Du
| first11 = H.
| last12 = Dunin-Borkowski
| first12 = R. E.
| authorlink12 = Rafal E. Dunin-Borkowski
| title = Direct Imaging of a Zero-Field Target Skyrmion and Its Polarity Switch in a Chiral Magnetic Nanodisk
| journal = Physical Review Letters
| volume = 119
| issue = 19
| pages = 197205
| date = November 2017
| pmid = 29219505
| doi = 10.1103/PhysRevLett.119.197205
}}
</ref>
<ref>
{{cite journal
| last1 = Jin
| first1 = C.
| last2 = Li
| first2 = Z. A.
| last3 = Kovács
| first3 = A.
| last4 = Caron
| first4 = J.
| last5 = Zheng
| first5 = F.
| last6 = Rybakov
| first6 = F. N.
| last7 = Kiselev
| first7 = N. S.
| last8 = Du
| first8 = H.
| last9 = Blügel
| first9 = S.
| last10 = Tian
| first10 = M.
| last11 = Zhang
| first11 = Y.
| last12 = Farle
| first12 = M.
| last13 = Dunin-Borkowski
| first13 = R. E.
| authorlink13 = Rafal E. Dunin-Borkowski
| title = Control of morphology and formation of highly geometrically confined magnetic skyrmions
| journal = Nature Communications
| volume = 8
| issue =
| pages = 15569
| date = June 2017
| pmid = 28580935
| pmc = 5465359
| doi = 10.1038/ncomms15569
}}
</ref>
<ref>
{{cite journal
| last1 = Jia
| first1 = C. L.
| last2 = Mi
| first2 = S. B.
| last3 = Barthel
| first3 = J.
| last4 = Wang
| first4 = D. W.
| last5 = Dunin-Borkowski
| first5 = R. E.
| authorlink5 = Rafal E. Dunin-Borkowski
| last6 = Urban
| first6 = K. W.
| authorlink6 = Knut Urban
| last7 = Thust
| first7 = A.
| title = Determination of the 3D shape of a nanoscale crystal with atomic resolution from a single image
| journal = Nature Materials
| volume = 13
| issue = 11
| pages = 1044–9
| date = November 2014
| pmid = 25242534
| doi = 10.1038/nmat4087
}}
</ref>
<ref>
{{cite journal
| last1 = Midgley
| first1 = P. A.
| authorlink1 = Paul Midgley|
| last2 = Dunin-Borkowski
| first2 = R. E.
| authorlink2 = Rafal E. Dunin-Borkowski
| title = Electron tomography and holography in materials science
| journal = Nature Materials
| volume = 8
| issue = 4
| pages = 271–80
| date = April 2009
| pmid = 19308086
| doi = 10.1038/nmat2406
}}
</ref>
<ref>
{{cite journal
| last1 = Hofmann
| first1 = S.
| last2 = Sharma
| first2 = R.
| last3 = Wirth
| first3 = C. T.
| last4 = Cervantes-Sodi
| first4 = F.
| last5 = Ducati
| first5 = C.
| last6 = Kasama
| first6 = T.
| last7 = Dunin-Borkowski
| first7 = R. E.
| authorlink7 = Rafal E. Dunin-Borkowski
| last8 = Drucker
| first8 = J.
| last9 = Bennett
| first9 = P.
| last10 = Robertson
| first10 = J.
| authorlink10 = John Robertson (physicist)
| title = Ledge-flow-controlled catalyst interface dynamics during Si nanowire growth
| journal = Nature Materials
| volume = 7
| issue = 5
| pages = 372–5
| date = May 2008
| pmid = 18327262
| doi = 10.1038/nmat2140
}}
</ref>
<ref>
{{cite journal
| last1 = Hÿtch
| first1 = M. J.
| last2 = Dunin-Borkowski
| first2 = R. E.
| authorlink2 = Rafal E. Dunin-Borkowski
| last3 = Scheinfein
| first3 = M. R.
| last4 = Moulin
| first4 = J.
| last5 = Duhamel
| first5 = C.
| last6 = Mazaleyrat
| first6 = F.
| last7 = Champion
| first7 = Y.
| title = Vortex flux channeling in magnetic nanoparticle chains
| journal = Physical Review Letters
| volume = 91
| issue = 25
| pages = 257207
| date = December 2003
| pmid = 14754151
| doi = 10.1103/PhysRevLett.91.257207
}}
</ref>
<ref>
{{cite journal
| last1 = Tripp
| first1 = S. L.
| last2 = Dunin-Borkowski
| first2 = R. E.
| authorlink2 = Rafal E. Dunin-Borkowski
| last3 = Wei
| first3 = A.
| title = Flux closure in self-assembled cobalt nanoparticle rings
| journal = Angewandte Chemie (International Ed. in English)
| volume = 42
| issue = 45
| pages = 5591–3
| date = November 2003
| pmid = 14639723
| doi = 10.1002/anie.200352825
}}
</ref>
<ref>
{{cite journal
| last1 = Harrison
| first1 = R. J.
| last2 = Dunin-Borkowski
| first2 = R. E.
| authorlink2 = Rafal E. Dunin-Borkowski
| last3 = Putnis
| first3 = A.
| title = Direct imaging of nanoscale magnetic interactions in minerals
| journal = Proceedings of the National Academy of Sciences of the United States of America
| volume = 99
| issue = 26
| pages = 16556–61
| date = December 2002
| pmid = 12482930
| pmc = 139182
| doi = 10.1073/pnas.262514499
}}
</ref>
<ref>
{{cite journal
| last1 = Meyer
| first1 = R. R.
| last2 = Sloan
| first2 = J.
| last3 = Dunin-Borkowski
| first3 = R. E.
| authorlink3 = Rafal E. Dunin-Borkowski
| last4 = Kirkland
| first4 = A. I.
| last5 = Novotny
| first5 = M. C.
| last6 = Bailey
| first6 = S. R.
| last7 = Hutchison
| first7 = J. L.
| last8 = Green
| first8 = M. L.
| title = Discrete atom imaging of one-dimensional crystals formed within single-walled carbon nanotubes
| journal = Science
| volume = 289
| issue = 5483
| pages = 1324–7
| date = August 2000
| pmid = 10958773
| doi = 10.1126/science.289.5483.1324
}}
</ref>
<ref>
{{cite journal
| last1 = McCartney
| first1 = M. R.
| last2 = Dunin-Borkowski
| first2 = R. E.
| authorlink2 = Rafal E. Dunin-Borkowski
| last3 = Scheinfein
| first3 = M. R.
| last4 = Smith
| first4 = D. J.
| authorlink4 = David J. Smith (physicist)
| last5 = Gider
| first5 = S.
| last6 = Parkin
| first6 = S. S.
| authorlink6 = Stuart Parkin
| title = Origin of magnetization decay in spin-dependent tunnel junctions
| journal = Science
| volume = 286
| issue = 5443
| pages = 1337–40
| date = November 1999
| pmid = 10558984
| doi = 10.1126/science.286.5443.1337
}}
</ref>
<ref>
{{cite journal
| last1 = Dunin-Borkowski
| first1 = R. E.
| authorlink1 = Rafal E. Dunin-Borkowski
| last2 = McCartney
| first2 = M. R.
| last3 = Frankel
| first3 = R. B.
| last4 = Bazylinski
| first4 = D. A.
| last5 = Posfai
| first5 = M.
| last6 = Buseck
| first6 = P. R.
| title = Magnetic microstructure of magnetotactic bacteria by electron holography
| journal = Science
| volume = 282
| issue = 5395
| pages = 1868–70
| date = December 1998
| pmid = 9836632
| doi = 10.1126/science.282.5395.1868
}}
</ref>


== Premi e onorificenze ==
== Premi e onorificenze ==

Versione delle 19:50, 13 giu 2020

Rafal E. Dunin-Borkowski (3 agosto 1969) è un fisico britannico.

Specializzatosi nella branca della fisica sperimentale, è attualmente direttore dell'Institute for Microstructure Research (PGI-5) e del centro di microscopia e spettroscopia elettronica (ER-C) Ernst Ruska nel Forschungszentrum Jülich e professore di fisica sperimentale all'Università RWTH di Aquisgrana.

Rafal E. Dunin-Borkowski

Formazione

Rafal Dunin-Borkowski ha studiato all'Università di Cambridge, dove ha conseguito un dottorato di ricerca nel 1994 per la sua ricerca sui materiali semiconduttori .

Ricerca

La sua ricerca prevede lo sviluppo di tecniche quantitative nella microscopia elettronica e si è recentemente focalizzato sull'uso dell'olografia elettronica fuori asse per studiare i campi magnetici ed elettrostatici in materiali sulla nanoscala, su film sottili e dispositivi. [1] [2] [3] [4] [5] [6] [7] [8] [9] [10] [11] [12] [13]

Premi e onorificenze

Riferimenti

  1. ^ Experimental observation of chiral magnetic bobbers in B20-type FeGe, in Nature Nanotechnology, vol. 13, n. 6, June 2018, pp. 451–455, DOI:10.1038/s41565-018-0093-3.
  2. ^ Atomic scale imaging of magnetic circular dichroism by achromatic electron microscopy, in Nature Materials, vol. 17, n. 3, March 2018, pp. 221–225, DOI:10.1038/s41563-017-0010-4.
  3. ^ Direct Imaging of a Zero-Field Target Skyrmion and Its Polarity Switch in a Chiral Magnetic Nanodisk, in Physical Review Letters, vol. 119, n. 19, November 2017, p. 197205, DOI:10.1103/PhysRevLett.119.197205.
  4. ^ Control of morphology and formation of highly geometrically confined magnetic skyrmions, in Nature Communications, vol. 8, June 2017, p. 15569, DOI:10.1038/ncomms15569.
  5. ^ Determination of the 3D shape of a nanoscale crystal with atomic resolution from a single image, in Nature Materials, vol. 13, n. 11, November 2014, pp. 1044–9, DOI:10.1038/nmat4087.
  6. ^ Electron tomography and holography in materials science, in Nature Materials, vol. 8, n. 4, April 2009, pp. 271–80, DOI:10.1038/nmat2406.
  7. ^ Ledge-flow-controlled catalyst interface dynamics during Si nanowire growth, in Nature Materials, vol. 7, n. 5, May 2008, pp. 372–5, DOI:10.1038/nmat2140.
  8. ^ Vortex flux channeling in magnetic nanoparticle chains, in Physical Review Letters, vol. 91, n. 25, December 2003, p. 257207, DOI:10.1103/PhysRevLett.91.257207.
  9. ^ Flux closure in self-assembled cobalt nanoparticle rings, in Angewandte Chemie (International Ed. in English), vol. 42, n. 45, November 2003, pp. 5591–3, DOI:10.1002/anie.200352825.
  10. ^ Direct imaging of nanoscale magnetic interactions in minerals, in Proceedings of the National Academy of Sciences of the United States of America, vol. 99, n. 26, December 2002, pp. 16556–61, DOI:10.1073/pnas.262514499.
  11. ^ Discrete atom imaging of one-dimensional crystals formed within single-walled carbon nanotubes, in Science, vol. 289, n. 5483, August 2000, pp. 1324–7, DOI:10.1126/science.289.5483.1324.
  12. ^ Origin of magnetization decay in spin-dependent tunnel junctions, in Science, vol. 286, n. 5443, November 1999, pp. 1337–40, DOI:10.1126/science.286.5443.1337.
  13. ^ Magnetic microstructure of magnetotactic bacteria by electron holography, in Science, vol. 282, n. 5395, December 1998, pp. 1868–70, DOI:10.1126/science.282.5395.1868.
  14. ^ ERC Synergy Grant: 12 million euros for research into "magic" 3D nanostructures.
  15. ^ Prestigious European Award for Jülich-Aachen Professor Rafal Dunin-Borkowski.
  16. ^ Ernst Ruska Prize of the German Society for Electron Microscopy.
  17. ^ BBC – Manchester – In pictures – Visions of Science.
  18. ^ David Derbyshire, Telegraph newspaper online – Stunning photos of beasts and beauty, in The Daily Telegraph, London, 6 ottobre 2004. URL consultato il 22 maggio 2010.
  19. ^ Royal Microscopical Society - Previous scientific imaging competition winners.