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Optical Spectroscopic Studies of the Metal-Insulator Transition Driven by All-In#8211;All-Out Magnetic Ordering in 5d Pyrochlore Cd2Os2O7

机译:5d烧绿石Cd2Os2O7中全-全-全磁有序驱动的金属-绝缘体跃迁的光谱研究

摘要

We investigated the metal-insulator transition (MIT) driven by all-in–all-out (AIAO) antiferromagnetic ordering in the 5d pyrochlore Cd2Os2O7 using optical spectroscopy and first-principles calculations. We showed that the temperature evolution in the band-gap edge and free carrier density were consistent with rigid upward (downward) shifts of electron (hole) bands, similar to the case of Lifshitz transitions. The delicate relationship between the band gap and free carrier density provides experimental evidence for the presence of an AIAO metallic phase, a natural consequence of such MITs. The associated spectral weight change at high energy and first-principles calculations further support the origin of the MIT from the band shift near the Fermi level. Our data consistently support that the MIT induced by AIAO ordering in Cd2Os2O7 is not close to a Slater type but instead to a Lifshitz type.
机译:我们使用光谱学和第一性原理计算方法研究了5d烧绿石Cd2Os2O7中由全进全出(AIAO)反铁磁有序驱动的金属-绝缘体转变(MIT)。我们表明,带隙边缘的温度演变和自由载流子密度与电子(空穴)带的刚性向上(向下)移动一致,类似于Lifshitz跃迁的情况。带隙和自由载流子密度之间的微妙关系为AIAO金属相的存在提供了实验证据,这是此类MIT的自然结果。高能和第一性原理计算中的相关频谱权重变化进一步支持了MIT的起源,即费米能级附近的带移。我们的数据始终支持由AIAO在Cd2Os2O7中的有序化引发的MIT不是接近于Slater类型,而是接近Lifshitz类型。

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