论文标题
在Mott-unsultator lavo3薄膜的单斜阶段中增强的电荷转移特征
Enhanced charge-transfer character in the monoclinic phase of Mott-insulator LaVO3 thin film
论文作者
论文摘要
在Laalo3(001)(LAO)底物上生长的外部外观LAVO3(LVO)薄膜的脉冲激光的电子结构已在室温下和130 K下进行了研究,该膜在结构(141 K)低于结构(141 K)和磁过渡温度(143 K)(143 K)(143 K)。在130 K处的LVO膜的价带光谱(VB)中观察到光谱强度的显着修改,主要围绕V 3D -O 2P杂交区域,在130 K处的LVO膜的价值谱图(VBS)证实,在130 K处进行了共振光发射研究证实,电荷转移的存在为3DNL(l:O 2p)最终状态的最终状态(l:hole in o 2p)最终状态3DN -1 FINDER in VAL FINDER in 1.5 evev in 1.5 evev in 1.5 evev in 1.5 evev in 1.5 evev in 1.5 evev。相反,在室温下,VBS主导v 3D位置只有3DN-1种最终状态。为了理解这种差异,使用密度功能理论(DFT)计算。晶体结构从室温正骨(O-LVO)到低温单斜(M-LVO)对称性的变化会导致FERMI水平围绕电子结构的显着变化,包括从带隙的直接转变为间接性质。我们的计算还证实了M-LVO的价带边缘中增强的O 2P字符,该字符与V 3D杂交。这些结果通过与结构过渡相关的八面体畸变进一步证实。
Electronic structure of pulsed laser deposited epitaxial LaVO3 (LVO) thin film grown on LaAlO3 (001) (LAO) substrate, has been studied at room temperature and at 130 K, which is below the structural (141 K) and magnetic transition temperatures (143 K) of single crystal LVO. Significant modification in spectral intensity, largely around the V 3d - O 2p hybridized region, is observed in valence band spectrum (VBS) of LVO film at 130 K. Resonant photoemission study at 130 K confirms the presence of charge transfer screened 3dnL (L: hole in the O 2p) final state along with the dominant 3dn-1 final state at 1.5 eV binding energy in the valence band. On the contrary, in the room temperature VBS dominant V 3d sates with only 3dn-1 kind final state is accentuated. To understand this difference, density functional theory (DFT) calculations are employed. The changes in crystal structure from room temperature orthorhombic (O-LVO) to low temperature monoclinic (M-LVO) symmetry leads to remarkable change in the electronic structure around the Fermi level, including transition from direct to indirect nature of band gap. Our calculations also confirm an enhanced O 2p character in the valence band edge of M-LVO that is hybridized with V 3d. These results are further corroborated with octahedral distortions associated with the structural transition.