Thermo-Mechanical Characterization of the Orthorhombic Nonlinear Optical Crystal PbGa2GeSe6
Abstract
1. Introduction
2. Thermal Expansion
3. Nanohardness and Young’s Modulus
4. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
Abbreviations
PGGSe | PbGa2GeSe6 |
SHG | Second-harmonic generation |
RT | Room temperature |
References
- Huang, Y.-Z.; Zhang, H.; Lin, C.-S.; Cheng, W.-D.; Guo, Z.; Chai, G.-L. PbGa2GeS6: An infrared nonlinear optical material synthesized by an intermediate-temperature self-fluxing method. Cryst. Growth Des. 2018, 18, 1162–1167. [Google Scholar] [CrossRef]
- Fedorchuk, A.O.; Parasyuk, O.V.; Cherniushok, O.; Andriyevsky, B.; Myronchuk, G.L.; Khyzhun, O.Y.; Lakshminarayana, G.; Jedryka, J.; Kityk, I.V.; ElNaggar, A.M.; et al. PbGa2GeS6 crystal as a novel nonlinear optical material: Band structure aspects. J. Alloys Compd. 2018, 740, 294–304. [Google Scholar] [CrossRef]
- Luo, Z.-Z.; Lin, C.-S.; Cui, H.-H.; Zhang, W.-L.; Zhang, H.; Chen, H.; He, Z.-Z.; Cheng, W.-D. PbGa2MSe6 (M = Si, Ge): Two exceptional infrared nonlinear optical crystals. Chem. Mater. 2015, 27 (Suppl. S1–S13), 914–922. [Google Scholar] [CrossRef]
- Lin, Z.; Li, C.; Kang, L.; Lin, Z.; Yao, J.; Wu, Y. SnGa2GeS6: Synthesis, structure, linear and nonlinear optical properties. Dalton Trans. 2015, 44, 7404–7410. [Google Scholar] [CrossRef] [PubMed]
- Li, Z.; Zhang, S.; Guo, Y.; Lin, Z.; Yao, J.; Wu, Y. SnGa2GeSe6, a benign addition to the AM2IIIMIVQ6 family: Synthesis, crystal structure and nonlinear optical performance. Dalton Trans. 2019, 48, 6638–6644. [Google Scholar] [CrossRef] [PubMed]
- Petrov, V. Frequency down-conversion of solid-state laser sources to the mid-infrared spectral range using non-oxide nonlinear crystals. Prog. Quantum Electron. 2015, 42, 1–106. [Google Scholar] [CrossRef]
- Valakh, M.Y.; Dzhagan, V.M.; Mazur, N.V.; Havryliuk, Y.O.; Yukhymchuk, V.O.; Piskach, L.V.; Kogut, Y.M.; Zahn, D.R.T.; Litvinchuk, A.P. Raman and infrared phonon spectra of novel nonlinear optical materials PbGa2GeS6 and PbGa2GeSe6: Experiment and theory. Phys. Stat. Sol. (b) 2020, 527, 1900700. [Google Scholar] [CrossRef]
- Badikov, V.V.; Badikov, D.V.; Wang, L.; Shevyrdyaeva, G.S.; Panyutin, V.L.; Fintisova, A.A.; Sheina, S.G.; Petrov, V. Crystal growth and characterization of a new quaternary chalcogenide nonlinear crystal for the mid-infrared: PbGa2GeSe6. Cryst. Growth Des. 2019, 19, 4224–4228. [Google Scholar] [CrossRef]
- Aggarwal, R.L.; Fan, T.Y. Thermal diffusivity, specific heat, thermal conductivity, coefficient of thermal expansion, and refractive-index change with temperature in AgGaSe2. Appl. Opt. 2005, 44, 2673–2677. [Google Scholar] [CrossRef] [PubMed]
- Oliver, W.C.; Pharr, G.M. An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J. Mater. Res. 1992, 7, 1564–1583. [Google Scholar] [CrossRef]
- Ivashchenko, I.; Danylyuk, I.; Olekseyuk, I. Phase diagrams of the AgIn5Se8–AgGaSe2 and AgIn5Se8–Ga2Se3 systems of the quasi-ternary system Ag2Se–Ga2Se3–In2Se3. Chem. Met. Alloys 2012, 5, 33–36. [Google Scholar] [CrossRef]
Direction | RT Lattice Constant, Å | α, ppm/K | R2 Factor |
---|---|---|---|
a | 47.001(7) | 7.03 | 0.9727 |
b | 7.5753(6) | 3.72 | 0.9633 |
c | 12.161(4) | 5.27 | 0.9707 |
Direction | Young’s Modulus, GPa | Nanohardness, GPa | Temperature, °C | Thermal Drift Correction, nm/s |
---|---|---|---|---|
a | 43.5 ± 0.5 | 3.16 ± 0.07 | 26.8 ± 0.2 | 0.231 ± 0.077 |
b | 56.6 ± 0.3 | 3.58 ± 0.04 | 20.1 ± 0.2 | 0.342 ± 0.025 |
c | 40.2 ± 0.3 | 3.42 ± 0.04 | 20.7 ± 0.2 | 0.264 ± 0.015 |
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Susner, M.A.; Goldstein, J.T.; Exner, G.K.; Grigorov, A.V.; Siebenaller, R.; Miyata, K.; Petrov, V. Thermo-Mechanical Characterization of the Orthorhombic Nonlinear Optical Crystal PbGa2GeSe6. Photonics 2025, 12, 556. https://doi.org/10.3390/photonics12060556
Susner MA, Goldstein JT, Exner GK, Grigorov AV, Siebenaller R, Miyata K, Petrov V. Thermo-Mechanical Characterization of the Orthorhombic Nonlinear Optical Crystal PbGa2GeSe6. Photonics. 2025; 12(6):556. https://doi.org/10.3390/photonics12060556
Chicago/Turabian StyleSusner, Michael A., Jonathan T. Goldstein, Ginka K. Exner, Aleksandar V. Grigorov, Ryan Siebenaller, Kentaro Miyata, and Valentin Petrov. 2025. "Thermo-Mechanical Characterization of the Orthorhombic Nonlinear Optical Crystal PbGa2GeSe6" Photonics 12, no. 6: 556. https://doi.org/10.3390/photonics12060556
APA StyleSusner, M. A., Goldstein, J. T., Exner, G. K., Grigorov, A. V., Siebenaller, R., Miyata, K., & Petrov, V. (2025). Thermo-Mechanical Characterization of the Orthorhombic Nonlinear Optical Crystal PbGa2GeSe6. Photonics, 12(6), 556. https://doi.org/10.3390/photonics12060556