Vibrational Properties of the Potassium Titanyl Phosphate Crystal Family
Вибрационные свойства семейства кристаллов титилфосфата калия
2023-09-25
SCID: 54.1/ck48nawz
Discuss with AI
Raman spectroscopydensity functional theory (DFT)phonon spectrapotassium titanyl phosphate (KTiOPO4)rubidium titanyl phosphate (RbTiOPO4)
Figures from the paper
Abstract (AI)
The crystal family of potassium titanyl phosphate (KTiOPO4) is a promising material group for applications in quantum and nonlinear optics. The fabrication of low-loss optical waveguides, as well as high-grade periodically poled ferroelectric domain structures, requires a profound understanding of the material properties and crystal structure. In this regard, Raman spectroscopy offers the possibility to study and visualize domain structures, strain, defects, and the local stoichiometry, which are all factors impacting device performance. However, the accurate interpretation of Raman spectra and their changes with respect to extrinsic and intrinsic defects requires a thorough assignment of the Raman modes to their respective crystal features, which to date is only partly conducted based on phenomenological modelling. To address this issue, we calculated the phonon spectra of potassium titanyl phosphate and the related compounds rubidium titanyl phosphate (RbTiOPO4) and potassium titanyl arsenate (KTiOAsO4) based on density functional theory and compared them with experimental data. Overall, this allows us to assign various spectral features to eigenmodes of lattice substructures with improved detail compared to previous assignments. Nevertheless, the analysis also shows that not all features of the spectra can unambigiously be explained yet. A possible explanation might be that defects or long range fields not included in the modeling play a crucial rule for the resulting Raman spectrum. In conclusion, this work provides an improved foundation into the vibrational properties in the KTiOPO4 material family.
Key Findings
1
Assignment of various Raman spectral features to eigenmodes of specific lattice substructures with improved detail over previous phenomenological models.
2
Calculated phonon spectra for KTiOPO4, RbTiOPO4, and KTiOAsO4 using density functional theory and compared them with experimental Raman data.
3
Not all observed Raman spectral features can be unambiguously explained by the DFT-based models.
4
Proposed that defects or long-range fields absent from the modeling may crucially influence the resulting Raman spectra.
5
Provided an improved foundational understanding of vibrational properties in the KTiOPO4 material family to support optical device fabrication and analysis.
Research Object
Potassium titanyl phosphate (KTiOPO4) crystal family including RbTiOPO4 and KTiOAsO4
Research Subject
Vibrational properties and phonon/Raman mode assignment of the KTiOPO4 crystal family, including calculated phonon spectra, comparison with experiment, and attribution of spectral features to lattice eigenmodes (with attention to effects of defects, strain, and long-range fields)
Publication Details
Publication Date
2023-09-25
Journal
Publisher
ISSN
Cited by
6
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest
References available in scid.ai4
Non-Invasive Visualization of Ferroelectric Domain Structures on the Non-Polar y-Surface of KTiOPO4 via Raman Imaging2021
QUANTUM ESPRESSO: a modular and open-source software project for quantum simulations of materials2009
Periodic Poling of KTiOPO<sub>4</sub>: From Micrometer to Sub-Micrometer Domain Gratings2006
Potassium titanyl phosphate: properties and new applications1989