Home > Publications database > Atomic-Scale Spin Spiral with a Unique Rotational Sense: Mn Monolayer on W(001) > print |
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024 | 7 | _ | |2 DOI |a 10.1103/PhysRevLett.101.027201 |
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084 | _ | _ | |2 WoS |a Physics, Multidisciplinary |
100 | 1 | _ | |a Ferriani, P. |b 0 |0 P:(DE-HGF)0 |
245 | _ | _ | |a Atomic-Scale Spin Spiral with a Unique Rotational Sense: Mn Monolayer on W(001) |
260 | _ | _ | |a College Park, Md. |b APS |c 2008 |
300 | _ | _ | |a 027201 |
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440 | _ | 0 | |a Physical Review Letters |x 0031-9007 |0 4925 |v 101 |
500 | _ | _ | |a Record converted from VDB: 12.11.2012 |
520 | _ | _ | |a Using spin-polarized scanning tunneling microscopy we show that the magnetic order of 1 monolayer Mn on W(001) is a spin spiral propagating along < 110 > crystallographic directions. The spiral arises on the atomic scale with a period of about 2.2 nm, equivalent to only 10 atomic rows. Ab initio calculations identify the spin spiral as a left-handed cycloid stabilized by the Dzyaloshinskii-Moriya interaction, imposed by spin-orbit coupling, in the presence of softened ferromagnetic exchange coupling. Monte Carlo simulations explain the formation of a nanoscale labyrinth pattern, originating from the coexistence of the two possible rotational domains, that is intrinsic to the system. |
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700 | 1 | _ | |a von Bergmann, K. |b 1 |0 P:(DE-HGF)0 |
700 | 1 | _ | |a Vedmedenko, E. Y. |b 2 |0 P:(DE-HGF)0 |
700 | 1 | _ | |a Heinze, S. |b 3 |0 P:(DE-HGF)0 |
700 | 1 | _ | |a Bode, M. |b 4 |0 P:(DE-HGF)0 |
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700 | 1 | _ | |a Wiesendanger, R. |b 8 |0 P:(DE-HGF)0 |
773 | _ | _ | |a 10.1103/PhysRevLett.101.027201 |g Vol. 101, p. 027201 |p 027201 |q 101<027201 |0 PERI:(DE-600)1472655-5 |t Physical review letters |v 101 |y 2008 |x 0031-9007 |
856 | 7 | _ | |u http://dx.doi.org/10.1103/PhysRevLett.101.027201 |
856 | 4 | _ | |u https://juser.fz-juelich.de/record/62804/files/FZJ-62804.pdf |y OpenAccess |z Published final document. |
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