• Chinese Optics Letters
  • Vol. 11, Issue 10, 102301 (2013)
Xuewen Long, Jing Bai, Xin Liu, Wei Zhao, and Guanghua Cheng
DOI: 10.3788/col201311.102301 Cite this Article Set citation alerts
Xuewen Long, Jing Bai, Xin Liu, Wei Zhao, Guanghua Cheng. Buried waveguide in neodymium-doped phosphate glass obtained by femtosecond laser writing using a double line approach[J]. Chinese Optics Letters, 2013, 11(10): 102301 Copy Citation Text show less
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[2] Ningning Zhang, Yi Zhang, Jun Bao, Feng Zhang, Sen Yan, Song Sun, Chen Gao. Luminescent solar concentrators with a bottom-mounted photovoltaic cell: performance optimization and power gain analysis[J]. Chinese Optics Letters, 2017, 15(6): 063501

[3] Juqiang Fang, Lan Jiang, Qiang Cao, Yanping Yuan, Liangti Qu, Ji'an Duan, Yongfeng Lu. Doping transition metal ions as a method for enhancement of ablation rate in femtosecond laser irradiation of silicate glass[J]. Chinese Optics Letters, 2014, 12(12): 121402

[4] Yi Zhang, Song Sun, Rui Kang, Jun Zhang, Mengjiao Wang, Wei Xie, Wenhao Yan, Jianjun Ding, Jun Bao, Chen Gao. Enhanced efficiency of the luminescent solar concentrator fabricated with an aqueous layer[J]. Chinese Optics Letters, 2014, 12(7): 073501

[5] Zhi Luo, Ji’an Duan, Cong Wang, Xiaoyan Sun, Kai Yin. Resonant ablation rules of femtosecond laser on Pr–Nd doped silicate glass[J]. Chinese Optics Letters, 2015, 13(5): 051403

[6] Chongyang Pei, Gencheng Wang, Bing Yang, Longzhi Yang, Yinlei Hao, Xiaoqing Jiang, Jianyi Yang. Study of selectively buried ion-exchange glass waveguides using backside masking[J]. Chinese Optics Letters, 2015, 13(2): 021301

Data from CrossRef

[1] Tao Wei, Ying Tian, Cong Tian, Xufeng Jing, Muzhi Cai, Junjie Zhang, Long Zhang, Shiqing Xu. Comprehensive evaluation of the structural, absorption, energy transfer, luminescent properties and near-infrared applications of the neodymium doped germanate glass. Journal of Alloys and Compounds, 618, 95(2015).

[2] Wenlong Tang, Wenfu Zhang, Xin Liu, Shuang Liu, Razvan Stoian, Guanghua Cheng. Tubular depressed cladding waveguide laser realized in Yb: YAG by direct inscription of femtosecond laser. Journal of Optics, 17, 105803(2015).

[3] Tianfeng Xue, Liyan Zhang, Junjiang Hu, Meisong Liao, Lili Hu. Thermal and spectroscopic properties of Nd3+-doped novel fluorogallate glass. Optical Materials, 47, 24(2015).

[4] Zahra Ashur Said Mahraz, E.S. Sazali, M.R. Sahar, Nur Ulfah Amran, S.N.S. Yaacob, Siti Maisarah Aziz, S.Q. Mawlud, F.M. Noor, A.N. Harun. Spectroscopic investigations of near-infrared emission from Nd3+-doped zinc-phosphate glasses: Judd-Ofelt evaluation. Journal of Non-Crystalline Solids, 509, 106(2019).

[5] Junli Wang, Borong He, Shixun Dai, Jiangfeng Zhu, Zhiyi Wei. Waveguide in Tm3+-Doped Chalcogenide Glass Fabricated by Femtosecond Laser Direct Writing. IEEE Photonics Technology Letters, 27, 237(2015).

Xuewen Long, Jing Bai, Xin Liu, Wei Zhao, Guanghua Cheng. Buried waveguide in neodymium-doped phosphate glass obtained by femtosecond laser writing using a double line approach[J]. Chinese Optics Letters, 2013, 11(10): 102301
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