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Ab initio investigations of magnetic properties of ultrathin transition ...

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104 6 Co MCA from monolayers to atomic chains<br />

Δd 12 [%]<br />

Δd 23 [%]<br />

d 12 [Å]<br />

0.0<br />

−4.0<br />

−8.0<br />

−12.0<br />

2.0<br />

0.0<br />

−2.0<br />

2.1<br />

2.0<br />

1.9<br />

(a) Fe<br />

Co<br />

(b)<br />

(c)<br />

4d(I)<br />

Ru Rh Pd<br />

Figure 6.1: 3d and 4d(I) FM relaxations, Δd12 (a) and Δd23 (b), <strong>of</strong> Co (Fe) on hexagonal 4d<br />

substrates are presented by solid green circles (black squares) connected by solid line. The<br />

corresponding changes are given with respect to the 4d substrates bulk interlayer spacing,<br />

which is 2.15, 2.21 and 2.28 ˚A for Ru, Rh and Pd, respectively. (c) The optimized 3d-4d<br />

interlayer distance d12 for Fe and Co on hexagonal 4d substrates.<br />

E AFM −E FM [meV/3d]<br />

Magnetic moments [μ Β ]<br />

400<br />

300<br />

200<br />

100<br />

0<br />

-100<br />

-200<br />

3.0<br />

2.5<br />

2.0<br />

1.5<br />

1.0<br />

0.4<br />

0.2<br />

0.0<br />

−0.2<br />

(a)<br />

(b)<br />

(c)<br />

?<br />

?<br />

?<br />

Fe<br />

Co<br />

4d(I)<br />

FM<br />

RW-AFM<br />

Tc Ru Rh Pd<br />

Figure 6.2: (a) Total energy differences between RW-AFM and FM configuration are presented<br />

by solid circles (squares) for Co (Fe) monolayer on Ru, Rh, Pd hexagonal substrates,<br />

positive (negative) values indicate that the FM (RW-AFM) is favorable. (b) The 3d <strong>magnetic</strong><br />

local moments are denoted by green circles (black squares) for the Co (Fe) monolayer.<br />

And (c) 4d substrates’ interface layer induced moments.

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