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APS -APS March Meeting 2017 - Event - Optical Investigation on the Effect of Vortex Domains on Electronic Transitions in HoMnO3 Single Crystals

机译:APS -APS 2017年3月会议-事件-HoMnO3单晶中涡旋域对电子跃迁影响的光学研究

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We investigated on the effect of vortex domain on the electronic transitions of HoMnO3 using optical spectroscopy. We observed different characteristics for d-d and p-d electronic transitions, which are centered near 1.7 eV and 5 eV at room temperature, respectively. The band edge energy of the p-d transition with vortex domains appears to show a clear increase which is attributed to the reduced hybridization between O p and Mn d states, while characteristics of the d-d transition does have distinct difference between vortex and normal states. However, from temperature dependent measurement, on the contrary, we observed the peak position of the d-d transition varying significantly with temperature between 10K to 300K, while the edge energy of the p-d transition is almost invariable. Such huge shifts of the d-d transition peak energy with temperature is known due to the antiferromagnetic superexchange interaction between nearest-neighbor Mn ions separated by oxygens.
机译:我们使用光谱学研究了涡旋畴对HoMnO3电子跃迁的影响。我们观察到d-d和p-d电子跃迁的不同特征,它们在室温下分别集中在1.7 eV和5 eV附近。具有涡旋域的p-d跃迁的带边能量似乎显示出明显的增加,这归因于O p和Mn d态之间杂化的降低,而d-d跃迁的特性确实在涡旋态和正常态之间具有明显的差异。但是,相反,从温度相关的测量中,我们观察到d-d跃迁的峰值位置随温度在10K到300K之间而显着变化,而p-d跃迁的边缘能量几乎不变。 d-d跃迁峰能量随温度的巨大变化是已知的,这是由于被氧分隔的最邻近的Mn离子之间存在反铁磁超交换相互作用。

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