Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Bruno Chilian"'
Autor:
Nadine Renner, Franziska Schöb, Regina Pape, Ilinca Suciu, Anna-Sophie Spreng, Anna-Katharina Ückert, Eike Cöllen, Federica Bovio, Bruno Chilian, Johannes Bauer, Stefan Röpcke, Jörg Bergemann, Marcel Leist, Stefan Schildknecht
Publikováno v:
Redox Biology, Vol 73, Iss , Pp 103165- (2024)
The activation of ferroptosis is being pursued in cancer research as a strategy to target apoptosis-resistant cells. By contrast, in various diseases that affect the cardiovascular system, kidneys, liver, and central and peripheral nervous systems, a
Externí odkaz:
https://doaj.org/article/f47909992c4d48088cd895285a0913c3
Publikováno v:
Handbook of Spintronics ISBN: 9789400768918
Handbook of Spintronics ISBN: 9789400776043
Handbook of Spintronics ISBN: 9789400776043
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4681bca4237c34389f5fab35f6b19434
https://doi.org/10.1007/978-94-007-6892-5_30
https://doi.org/10.1007/978-94-007-6892-5_30
Autor:
Sergej Schuwalow, Jens Wiebe, Alexander A. Khajetoorians, Bruno Chilian, Frank Lechermann, Roland Wiesendanger
Publikováno v:
Nature
Isolated magnetic dopant atoms in a non-magnetic semiconductor host represent a promising system for spintronics applications. The atoms behave rather like minute compass needles, where each 'compass' can align along different directions and thus car
Autor:
Klaus Fredenhagen, Bruno Chilian
Publikováno v:
Communications in Mathematical Physics. 287:513-522
The time slice axiom states that the observables which can be measured within an arbitrarily small time interval suffice to predict all other observables. While well known for free field theories where the validity of the time slice axiom is an immed
Autor:
Samir Lounis, Bruno Chilian, Roland Wiesendanger, Jens Wiebe, Alexander A. Khajetoorians, Stefan Blügel
Publikováno v:
Nature Physics
Small clusters of magnetic atoms can behave in very different ways to those same atoms in bulk. Arranging iron atoms one by one into complex but well-defined patterns on a copper surface enables the construction of nanoscale magnetic structures with
Autor:
Jens Wiebe, D. L. Mills, Samir Lounis, Bruno Chilian, Roland Wiesendanger, Antonio Costa, Alexander A. Khajetoorians
Publikováno v:
Physical Review B
Physical review / B 84(21), 212401 (2011). doi:10.1103/PhysRevB.84.212401
Physical review / B 84(21), 212401 (2011). doi:10.1103/PhysRevB.84.212401
We have performed inelastic scanning tunneling spectroscopy (ISTS) on individual Fe atoms adsorbed on a Ag(111) surface. ISTS reveals a magnetization excitation with a lifetime of about 400 fsec which decreases linearly upon application of a magnetic
Publikováno v:
Physical Review B
We investigate the dependence of the inelastic spin excitation contribution to scanning tunneling spectroscopy recorded above Fe adsorbates on the InSb(110) surface at subkelvin temperatures, on bulk doping, and tunnel junction resistance. To explain
Publikováno v:
Science 332 1062-1064.
An ultimate goal of spintronic research is the realization of concepts for atomic-scale all-spin-based devices. We combined bottom-up atomic fabrication with spin-resolved scanning tunneling microscopy to construct and read out atomic-scale model sys
Autor:
Lihui Zhou, Roland Wiesendanger, Samir Lounis, Antonio Costa, D. L. Mills, Alexander A. Khajetoorians, Bruno Chilian, Jens Wiebe
Publikováno v:
Physical review letters 106, 037205 (2011). doi:10.1103/PhysRevLett.106.037205
Physical Review Letters
Physical Review Letters
We have performed single-atom magnetization curve (SAMC) measurements and inelastic scanning tunneling spectroscopy (ISTS) on individual Fe atoms on a Cu(111) surface. The SAMCs show a broad distribution of magnetic moments with $\unit[3.5]{\mu_{\rm
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::02e83c7dbdb0018ea984659aef29e9d8
https://hdl.handle.net/2128/7277
https://hdl.handle.net/2128/7277
Publikováno v:
Physik in unserer Zeit. 42:162-163
Die Nano-Spintronik verfolgt das Ziel, den Elektronenspin in Atomen oder Molekulen nutzbar zu machen, um Bauelemente der Informationstechnologie kleiner, schneller, energieeffizienter, und kompatibel mit nichtfluchtigen Speichern zu gestalten. Unsere