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Evolution of valence-specific spin states and local distortions in La_(2-x)Sr_xCoO₄

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arxiv 2001.05194 v3 pith:CIRN7EDT submitted 2020-01-15 cond-mat.str-el

Evolution of valence-specific spin states and local distortions in La_(2-x)Sr_xCoO₄

classification cond-mat.str-el
keywords increasesstatestetragonaldistortionsevolutionhigh-spinspinvalence-specific
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We present X-ray spectroscopic evidence for the evolution of valence-specific spin states and tetragonal distortions in single-layer cobaltates. Measurements of Co $L_3$-edge resonant inelastic X-ray scattering reveal the $t_{2g}$ electronic structure of Co for hole-doped La$_{2-x}$Sr$_x$CoO$_4$ ($x$ = 0.5, 0.7 and 0.8). As the Sr-doping $x$ increases, the tetragonal splitting of the $t_{2g}$ states of high-spin Co$^{2+}$ decreases, whereas that of low-spin Co$^{3+}$ increases and the fraction of high-spin Co$^{3+}$ increases. The results enable us to clarify the origin of the change of magnetic anisotropy and in-plane resistivity in a mixed-valence cobaltate caused by the interplay of spin-orbit coupling and tetragonal distortion.

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