Infrared and Laser Engineering, Volume. 52, Issue 1, 20210869(2023)
Characterization of single crystal Bi:YIG for microwave and optical communication
[1] Yongchuan Zhou, Fei Yang, Shijing Ren. Effect of Bi3+ substitution on properties of polycrystalline garnet ferrite materials. Magnetic Materials and Devices, 51, 6-8(2020).
[2] Jingtao Zhou, Jingxia Huang, Li Li. Nd: GGG laser at 1110 nm and frequency-doubled laser at 555 nm. Infrared and Laser Engering, 44, 865-871(2015).
[3] Wei Wang, Zhongwen Lan, Zhigang Wu. Effect of the oxygen vacancy of Ce: YIG films on optical absorption and properties. Infrared and Laser Engineering, 35, 481-484(2006).
[4] Yong Jiang, Wei Liao, Biyi Wang, et al. Light modulation performance control of the coating on the repaired damage sites in fused silica surface. Chinese Optics, 14, 552-559(2021).
[5] Yilei Li, Ding Zhang, Min Luo, et al. Terahertz magneto-optical response of bismuth-gadolinium-substituted rear-earth garnet film. Optics Express, 29, 23540-23548(2021).
[6] Jingzhao Li, Zhenqiang Chen, Siqi Zhu. Passively Q-switched laser with a Yb: YAG/Cr4+: YAG/YAG composite crystal. Optics and Precision Engineering, 26, 55-61(2018).
[7] A R Prokopov, P M Vetoshko, A G Shumilov, et al. Epitaxial Bi-Gd-Sc iron-garnet films for magnetophotonic applications. Journal of Alloys and Compounds, 671, 403-407(2016).
[8] L Halagačka, K Postava, M Vanwolleghem, et al. Mueller matrix optical and magneto-optical characterization of Bi-substituted gadolinium iron garnet for application in magnetoplasmonic structures. Optical Materials Express, 4, 1903-1919(2014).
[9] [9] Tan Shijie. The study of YIG film materials applied in microwave magooptic components[D]. Mianyang: Southwest University of Science Technology, 2019. (in Chinese)
[10] Juanjuan Wang, Xuhui Li, Yang Cao, et al. Bi: Study on growth process and magneto-optical properties of Bi: YIG garnet thin film. Shandong Chemical Industry, 49, 36-38(2020).
[11] [11] Feng Yagang. Component design property modulation of rare earth doped (Y, Lu, Gd)3(Al, Sc)5O12 laser cerimics[D]. Shanghai: Shanghai Institute of Ceramics, Chinese Academy of Sciences (University of Chinese Academy of Sciences), 2020. (in Chinese)
[12] Shengtai Zhang, Lingkun Wang, Baoliang Xu, et al. Rapid synthesis of Nd-doped Y3Fe5O12 garnet waste forms by microwave sintering. Ceramics International, 47, 21924-21933(2021).
[13] [13] Qiu Yanpeng. Preparation study of low dimensional BiYIG magooptic materials[D]. Hangzhou: Zhejiang University, 2007. (in Chinese)
[14] Xue Yang, Qinghui Yang, Huaiwu Zhang, et al. Preparation and orientation mechanism analysis of out-of-plane oriented (BiTm)3(GaFe)5O12 magneto-optic single crystal films. Journal of Physics, 70, 296-303(2021).
Get Citation
Copy Citation Text
Lu Zhang, Jianbo Yang, Ziyan Zhang, Peng Cai. Characterization of single crystal Bi:YIG for microwave and optical communication[J]. Infrared and Laser Engineering, 2023, 52(1): 20210869
Category: Materials & Thin films
Received: Nov. 22, 2021
Accepted: --
Published Online: Feb. 9, 2023
The Author Email: