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Effect of spin-orbit coupling on spin and orbital ordering in Sr$_{n+1}$Cr$_n$O$_{3n+1}$, $n=1,2$

Cristian Fanjul, A. A. Aligia

Abstract

We incorporate spin-orbit coupling (SOC) into effective Kugel-Khomskii models for the $n=1$ and $n=2$ members of the Ruddlesden-Popper series Sr$_{n+1}$Cr$_n$O$_{3n+1}$. These model contain interacting spins 1 and pseudospins 1/2 at each site describing spin and orbitals degrees of freedom respectively. We solve the models at zero temperature using pseudospin bond operators and spin waves. We find that for realistic parameters, SOC dominates the physics of the compound Sr$_{2}$CrO$_{4}$ with almost decoupled single CrO$_2$ planes. The spin ordering is antiferromagnetic, with nearest-neighbor Cr spins aligned antiparallel. The corresponding orbital configuration is $d_{xy \uparrow }^{1}(d_{xz\uparrow }^{1}-id_{yz\uparrow }^{1})$ or $d_{xy \downarrow }^{1}(d_{xz\downarrow }^{1}+id_{yz\downarrow }^{1})$ depending on the spin of the site. In contrast, for the bilayer compound Sr$_{3}$Cr$_{2}$O$_{7}$ we find that the effect of the SOC is weak and the system prefers to form pseudospin singlets in the $z$ direction perpendicular to the planes. The spin order is antiferromagnetic within each plane and ferromagnetic between planes, in agreement with previous studies.

Effect of spin-orbit coupling on spin and orbital ordering in Sr$_{n+1}$Cr$_n$O$_{3n+1}$, $n=1,2$

Abstract

We incorporate spin-orbit coupling (SOC) into effective Kugel-Khomskii models for the and members of the Ruddlesden-Popper series SrCrO. These model contain interacting spins 1 and pseudospins 1/2 at each site describing spin and orbitals degrees of freedom respectively. We solve the models at zero temperature using pseudospin bond operators and spin waves. We find that for realistic parameters, SOC dominates the physics of the compound SrCrO with almost decoupled single CrO planes. The spin ordering is antiferromagnetic, with nearest-neighbor Cr spins aligned antiparallel. The corresponding orbital configuration is or depending on the spin of the site. In contrast, for the bilayer compound SrCrO we find that the effect of the SOC is weak and the system prefers to form pseudospin singlets in the direction perpendicular to the planes. The spin order is antiferromagnetic within each plane and ferromagnetic between planes, in agreement with previous studies.

Paper Structure

This paper contains 9 sections, 45 equations, 1 figure, 1 table.

Figures (1)

  • Figure 1: (Color online) Classical order of the pseudospins in phase II after the symmetry operation $R$ described in the text.