Journal of Synthetic Crystals, Volume. 53, Issue 11, 1901(2024)
Fabrication and Properties of Layer-Structured YAG/Yb∶YAG Transparent Ceramics
[1] [1] DAVID S P, JAMBUNATHAN V, LUCIANETTI A, et al. Overview of ytterbium based transparent ceramics for diode pumped high energy solid-state lasers[J]. High Power Laser Science and Engineering, 2018, 6: e62.
[3] [3] ZHU D, CHEN Z Z, SONG Y J, et al. High power (~10 kW) Yb∶YAG ceramic slab laser operating at 1 030 nm[J]. IEEE Photonics Technology Letters, 2023, 35(14): 789-792.
[5] [5] ZUO J X, LIN X C. High-power laser systems[J]. Laser & Photonics Reviews, 2022, 16(5): 2100741.
[6] [6] QI Y F, ZHU X L, LOU Q H, et al. Nd∶YAG ceramic laser obtained high slope-efficiency of 62% in high power applications[J]. Optics Express, 2005, 13(22): 8725.
[9] [9] YU S Q, JING W, TANG M J, et al. Fabrication, microstructure and optical properties of large-sized Nd∶YAG and composite Yb∶YAG transparent ceramic slabs[J]. Ceramics International, 2019, 45(15): 19340-19344.
[10] [10] IKESUE A, KINOSHITA T, KAMATA K, et al. Fabrication and optical properties of high-performance polycrystalline Nd∶YAG ceramics for solid-state lasers[J]. Journal of the American Ceramic Society, 1995, 78(4): 1033-1040.
[11] [11] IKESUE A, AUNG Y L. Synthesis of Yb∶YAG ceramics without sintering additives and their performance[J]. Journal of the American Ceramic Society, 2017, 100(1): 26-30.
[12] [12] MENG S, CHEN Z Z, BO Y, et al. 6.2 kW quasi-continuous-wave diode-pumped Yb∶YAG ceramic slab laser[J]. Laser Physics, 2020, 30(1): 015802.
[13] [13] TIAN F, JIANG N, LIU Y, et al. Fabrication and properties of multistage gradient doping Yb∶YAG laser ceramics[J]. Journal of the American Ceramic Society, 2023, 106(4): 2309-2316.
[14] [14] TIAN F, IKESUE A, LI J. Progress and perspectives on composite laser ceramics: a review[J]. Journal of the European Ceramic Society, 2022, 42(5): 1833-1851.
[18] [18] KONYUSHKIN V A, NAKLADOV A N, KONYUSHKIN D V, et al. Ceramic planar waveguide structures for amplifiers and lasers[J]. Quantum Electronics, 2013, 43(1): 60-62.
[19] [19] HOSTAA J, BIASINI V, PIANCASTELLI A, et al. Layered Yb∶YAG ceramics produced by two different methods: processing, characterization, and comparison[J]. Optical Engineering, 2016, 55(8): 087104.
[20] [20] KUPP E R, MESSING G L, ANDERSON J M, et al. Co-casting and optical characteristics of transparent segmented composite Er∶YAG laser ceramics[J]. Journal of Materials Research, 2010, 25(3): 476-483.
[21] [21] FURUSE H, KAWANAKA J, MIYANAGA N, et al. Zig-zag active-mirror laser with cryogenic Yb3+∶YAG/YAG composite ceramics[J]. Optics Express, 2011, 19(3): 2448.
[22] [22] HU R, WILHELM R, KOLLECK C, et al. Suppression of parasitic oscillations in a core-doped ceramic Nd∶YAG laser by Sm∶YAG cladding[J]. Optics Express, 2010, 18(12): 13094.
[23] [23] JIANG N, LIN W P, ZHAO Y, et al. Fabrication and kW-level MOPA laser output of planar waveguide YAG/Yb∶YAG/YAG ceramic slab[J]. Journal of the American Ceramic Society, 2019, 102(4): 1758-1767.
[24] [24] FUJIOKA K, SUGIYAMA A, FUJIMOTO Y, et al. Ion diffusion at the bonding interface of undoped YAG/Yb∶YAG composite ceramics[J]. Optical Materials, 2015, 46: 542-547.
[25] [25] BONNET L, BOULESTEIX R, MAITRE A, et al. Manufacturing issues and optical properties of rare-earth (Y, Lu, Sc, Nd) aluminate garnets composite transparent ceramics[J]. Optical Materials, 2015, 50: 2-10.
[26] [26] WANG C, LI W X, BAI D B, et al. Mode-locked composite YAG/Yb∶YAG ceramic laser and high-power amplification[J]. IEEE Photonics Technology Letters, 2016, 28(4): 433-436.
[27] [27] TANG F, CAO Y G, HUANG J Q, et al. Fabrication and laser behavior of composite Yb∶YAG ceramic[J]. Journal of the American Ceramic Society, 2012, 95(1): 56-69.
[28] [28] LI J, WU Y S, PAN Y B, et al. Laminar-structured YAG/Nd∶YAG/YAG transparent ceramics for solid-state lasers[J]. International Journal of Applied Ceramic Technology, 2008, 5(4): 360-364.
[29] [29] BA X W, LI J, PAN Y B, et al. Influences of solid loadings on the microstructures and the optical properties of Yb∶YAG ceramics[J]. International Journal of Applied Ceramic Technology, 2015, 12(2): 418-425.
[30] [30] YANG K W, BA X W, LI J, et al. Multilayer YAG/Yb∶YAG composite ceramic laser[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2015, 21(1): 1602705.
[31] [31] ESPOSITO L, HOSTAA J, PIANCASTELLI A, et al. Multilayered YAG-Yb∶YAG ceramics: manufacture and laser performance[J]. J Mater Chem C, 2014, 2(47): 10138-10148.
[32] [32] HOSTAA J, PIANCASTELLI A, TOCI G, et al. Transparent layered YAG ceramics with structured Yb doping produced via tape casting[J]. Optical Materials, 2017, 65: 21-27.
[33] [33] LI J S, GUAN Q L, WU L, et al. Influence of Yb and Si on the fabrication of Yb∶YAG transparent ceramics using spherical Y2O3 powders[J]. Ceramics International, 2019, 45(14): 17354-17362.
[34] [34] CHAIKA M, VOVK O, MANCARDI G, et al. Dynamics of Yb2+ to Yb3+ ion valence transformations in Yb∶YAG ceramics used for high-power lasers[J]. Optical Materials, 2020, 101: 109774.
[35] [35] WU Z N, LU Y G, HUANG J, et al. Third-order optical nonlinearity measurements and optical limiting experiment in Tm∶YAG crystal[J]. Applied Optics, 2022, 61(2): 392-397.
[36] [36] DRAZIN J W, HAY R S. Refractive index dispersion prediction for garnets (A3B2C3X12)[J]. Journal of the American Ceramic Society, 2024, 107(7): 4925-4935.
[37] [37] SANG P F, ZHANG L, KANG J, et al. Composite structure Al2O3/Al2O3-YAG∶Ce/YAG ceramics with high color spatial uniformity for white laser lighting[J]. Journal of Advanced Ceramics, 2024, 13(2): 189-197.
Get Citation
Copy Citation Text
FENG Yagang, TIAN Feng, LIU Ziyu, LIU Yiyang, WU Lexiang, LI Tingsong, LI Jiang. Fabrication and Properties of Layer-Structured YAG/Yb∶YAG Transparent Ceramics[J]. Journal of Synthetic Crystals, 2024, 53(11): 1901
Category:
Received: Aug. 12, 2024
Accepted: Jan. 2, 2025
Published Online: Jan. 2, 2025
The Author Email: Jiang LI (lijiang@mail.sic.ac.cn)
CSTR:32186.14.