[1] KAMADA K, YANAGIDA T, ENDO T, et al. 2 inch diameter single crystal growth and scintillation properties of Ce∶Gd3Al2Ga3O12[J]. Journal of Crystal Growth, 2012, 352(1): 88-90. [2] KAMADA K, NIKL M, KUROSAWA S, et al. Co-doping effects on luminescence and scintillation properties of Ce doped Lu3Al5O12 scintillator[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2015, 782: 9-12. [3] ZHU D Y, CHEN X P, BEITLEROVA A, et al. Influence of calcium doping concentration on the performance of Ce, Ca∶LuAG scintillation ceramics[J]. Journal of the European Ceramic Society, 2022, 42(13): 6075-6084. [4] YANAGIDA T, FUJIMOTO Y, YOKOTA Y, et al. Comparative study of transparent ceramic and single crystal Ce doped LuAG scintillators[J]. Radiation Measurements, 2011, 46(12): 1503-1505. [5] KAMADA K, ENDO T, TSUTUMI K, et al. Composition engineering in cerium-doped (Lu, Gd)3(Ga, Al)5O12 single-crystal scintillators[J]. Crystal Growth & Design, 2011, 11(10): 4484-4490. [6] MARES J A, BEITLEROVA A, NIKL M, et al. Scintillation response of Ce-doped or intrinsic scintillating crystals in the range up to 1 MeV[J]. Radiation Measurements, 2004, 38(4/5/6): 353-357. [7] KANG T W, PARK K W, RYU J H, et al. Strong thermal stability of Lu3Al5O12∶Ce3+ single crystal phosphor for laser lighting[J]. Journal of Luminescence, 2017, 191: 35-39. [8] LI J L, XU J, SHI Y, et al. Fabrication and microstructure of cerium doped lutetium aluminum garnet (Ce∶LuAG) transparent ceramics by solid-state reaction method[J]. Materials Research Bulletin, 2014, 55: 161-167. [9] SREEBUNPENG K, CHEWPRADITKUL W, NIKL M. Light yield and light loss coefficient of LuAG∶Ce and LuAG∶Pr under excitation with α- and γ-rays[J]. Journal of Crystal Growth, 2016, 468: 373-375. [10] KONONETS V, AUFFRAY E, DUJARDIN C, et al. Growth of long undoped and Ce-doped LuAG single crystal fibers for dual readout calorimetry[J]. Journal of Crystal Growth, 2016, 435: 31-36. [11] SAATSAKIS G, LINARDATOS D, KARPETAS G, et al. On the thermal response of LuAG∶Ce single crystals[J]. Procedia Structural Integrity, 2021, 33: 287-294. [12] ZORENKO Y, GORBENKO V, VOLOSHINOVSKII A, et al. Exciton-related luminescence in LuAG∶Ce single crystals and single crystalline films[J]. Physica Status Solidi (a), 2005, 202(6): 1113-1119. [13] 郭勇文,黄晋强,权纪亮.大尺寸Nd,Ce∶YAG激光晶体的生长及缺陷研究[J].人工晶体学报,2021,50(2):244-247+252. GUO Y W, HUANG J Q, QUAN J L. Growth and defects of large size Nd, Ce∶YAG laser crystal[J]. Journal of Synthetic Crystals, 2021, 50(2): 244-247+252(in Chinese). [14] QUAN J L, YANG X, LONG S W, et al. Growth and fluorescence characteristics of Er∶LuAG laser crystals[J]. Journal of Crystal Growth, 2019, 507: 321-326. [15] QUAN J L, YANG X, YANG M M, et al. Study on growth techniques and macro defects of large-size Nd∶YAG laser crystal[J]. Journal of Crystal Growth, 2018, 483: 200-205. [16] 曾繁明,孙 晶,李建利,等.Nd∶GGG晶体生长与开裂研究[J].人工晶体学报,2005,34(2):332-335. ZENG F M, SUN J, LI J L, et al. Study on the growth and cracking of Nd∶GGG crystal[J]. Journal of Synthetic Crystals, 2005, 34(2): 332-335(in Chinese). [17] OKANO Y, FUKUDA T, HIRATA A, et al. Numerical study on Czochralski growth of oxide single crystals[J]. Journal of Crystal Growth, 1991, 109(1/2/3/4): 94-98. [18] JEONG J H, KANG I S. Analytical studies on the crystal-melt interface shape in the Czochralski process for oxide single crystals[J]. Journal of Crystal Growth, 2000, 218(2/3/4): 294-312. [19] 刘景和,李建利,徐 斌,等.NaBi(WO4)2晶体生长与开裂研究[J].硅酸盐学报,2001,29(4):370-373. LIU J H, LI J L, XU B, et al. Study on growth and cracking of NaBi(WO4)2 crystal[J]. Journal of the Chinese Ceramic Society, 2001, 29(4): 370-373(in Chinese). [20] 冯锡淇.YAG和LuAG晶体中的反位缺陷[J].无机材料学报,2010,25(8):785-794. FENG X Q. Anti-site defects in YAG and LuAG crystals[J]. Journal of Inorganic Materials, 2010, 25(8): 785-794(in Chinese). [21] KANCHANAVALEERAT E, COCHET-MUCHY D, KOKTA M, et al. Crystal growth of high doped Nd∶YAG[J]. Optical Materials, 2004, 26(4): 337-341. [22] TILLER W A. The science of crystallization[M]. Cambridge: Cambridge University Press, 1992. |