Atomic and itinerant effects at the transition metal x-ray absorption K-pre-edge exemplified in the case of VO
arXiv:1111.1544 · doi:10.1103/PhysRevB.85.115136
Abstract
X-ray absorption spectroscopy is a well established tool for obtaining information about orbital and spin degrees of freedom in transition metal- and rare earth-compounds. For this purpose usually the dipole transitions of the L- (2p to 3d) and M- (3d to 4f) edges are employed, whereas higher order transitions such as quadrupolar 1s to 3d in the K-edge are rarely studied in that respect. This is due to the fact that usually such quadrupolar transitions are overshadowed by dipole allowed 1s to 4p transitions and, hence, are visible only as minor features in the pre-edge region. Nonetheless, these features carry a lot of valuable information, similar to the dipole L-edge transition, which is not accessible in experiments under pressure due to the absorption of the diamond anvil pressurecell. We recently performed a theoretical and experimental analysis of such a situation for the metal insulator transition of (V(1-x)Crx)2O3. Since the importance of the orbital degrees of freedom in this transition is widely accepted, a thorough understanding of quadrupole transitions of the vanadium K-pre-edge provides crucial information about the underlying physics. Moreover, the lack of inversion symetry at the vanadium site leads to onsite mixing of vanadium 3d- and 4p- states and related quantum mechanical interferences between dipole and quadrupole transitions. Here we present a theoretical analysis of experimental high resolution x-ray absorption spectroscopy at the V pre-K edge measured in partial fluorescence yield mode for single crystals. We carried out density functional as well as configuration interaction calculations in order to capture effects coming from both, itinerant and atomic limits.
References in corpus (8)
- Orbital-assisted metal-insulator transition in VO
- A Microscopic View on the Mott transition in Chromium-doped V2O3
- Enhanced Crystal Field Splitting and Orbital Selective Coherence by Strong Correlations in V_2O_3
- Quasiparticle evolution and pseudogap formation in V2O3: An infrared spectroscopy study
- Inequivalent routes across the Mott transition in V2O3 explored by X-ray absorption
- Determining the crystal-field ground state in rare earth Heavy Fermion materials using soft-x-ray absorption spectroscopy
- Structural, electronic, and magneto-optical properties of YVO
- Evolution of the electronic structure of a Mott system across its phase diagram: an X-ray absorption spectroscopy study of (V(1-x)Crx)2O3
Cited by in corpus (6)
- Bands, resonances, edge singularities and excitons in core level spectroscopy investigated within the dynamical mean field theory
- Asymmetric band widening by screened exchange competing with local correlations in SrVO3: new surprises on an old compound from combined GW and dynamical mean field theory GW+DMFT
- Mott-Hubbard transition in V2O3 revisited
- Hard x-ray emission spectroscopy: a powerful tool for the characterization of magnetic semiconductors
- A pure state decomposition approach of the mixed dynamic form factor for mapping atomic orbitals
- Dipole matrix element approach vs. Peierls approximation for optical conductivity