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Nuclear resonant scattering from 193Ir as a probe of the electronic and magnetic properties of iridates

机译:193Ir的核共振散射作为铱酸盐电子和磁性的探针

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摘要

The high brilliance of modern synchrotron radiation sources facilitates experiments with high-energy x-rays across a range of disciplines, including the study of the electronic and magnetic correlations using elastic and inelastic scattering techniques. Here we report on Nuclear Resonance Scattering at the 73 keV nuclear level in 193Ir. The transitions between the hyperfine split levels show an untypically high E2/M1 multi-polarity mixing ratio combined with an increased sensitivity to certain changes in the hyperfine field direction compared to non-mixing transitions. The method opens a new way for probing local magnetic and electronic properties of correlated materials containing iridium and provides novel insights into anisotropic magnetism in iridates. In particular, unexpected out-of-plane components of magnetic hyperfine fields and non-zero electric field gradients in Sr2IrO4 have been detected and attributed to the strong spin-orbit interaction in this iridate. Due to the high, 62% natural abundance of the 193Ir isotope, no isotopic enrichment of the samples is required, qualifying the method for a broad range of applications.
机译:现代同步加速器辐射源的高亮度促进了跨学科学科的高能X射线实验,包括使用弹性和非弹性散射技术研究电子和磁性相关性。在这里,我们报道了 193 Ir中73 atkeV核能级的核共振散射。与非混合过渡相比,超精细分裂能级之间的跃迁表现出异常高的E2 / M1多极性混合比,并且对超精细磁场方向上某些变化的敏感性增加。该方法为探测含铱相关材料的局部磁性和电子性质开辟了一条新途径,并为铱酸盐的各向异性磁性提供了新的见解。特别是,已检测到Sr2IrO4中超精细磁场的意外平面外分量和非零电场梯度,并归因于该铱酸盐中强烈的自旋轨道相互作用。由于 193 Ir同位素的自然丰度高达62%,因此不需要同位素富集样品,从而使该方法具有广泛的应用前景。

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