期刊文献+

High-power electro-optic switch technology based on novel transparent ceramic 被引量:2

High-power electro-optic switch technology based on novel transparent ceramic
下载PDF
导出
摘要 A novel high-power polarization-independent electro-optic switch technology based on a reciprocal structtire Sagnac interferometer and a transparent quadratic electro-optic ceramic is proposed and analyzed theoretically and experimentally. The electro-optic ceramic is used as a phase retarder for the clockwise and counter-clockwise polarized light, and their po- larization directions are adjusted to their orthogonal positions by using two half-wave plates. The output light then becomes polarization-independent with respect to the polarization direction of the input light. The switch characteristics, including splitter ratios and polarization states, are theoretically analyzed and simulated in detail by the matrix multiplication method. An experimental setup is built to verify the analysis and experimental results. A new component ceramic is used and a non- polarizing cube beam splitter (NPBS) replaces the beam splitter (BS) to lower the ON/OFF voltage to 305 V and improve the extinction ratio by 2 dB. Finally, the laser-induced damage threshold for the proposed switch is measured and discussed. It is believed that potential applications of this novel polarization-independent electro-optic switch technology will be wide, especially for ultrafast high-power laser systems. A novel high-power polarization-independent electro-optic switch technology based on a reciprocal structtire Sagnac interferometer and a transparent quadratic electro-optic ceramic is proposed and analyzed theoretically and experimentally. The electro-optic ceramic is used as a phase retarder for the clockwise and counter-clockwise polarized light, and their po- larization directions are adjusted to their orthogonal positions by using two half-wave plates. The output light then becomes polarization-independent with respect to the polarization direction of the input light. The switch characteristics, including splitter ratios and polarization states, are theoretically analyzed and simulated in detail by the matrix multiplication method. An experimental setup is built to verify the analysis and experimental results. A new component ceramic is used and a non- polarizing cube beam splitter (NPBS) replaces the beam splitter (BS) to lower the ON/OFF voltage to 305 V and improve the extinction ratio by 2 dB. Finally, the laser-induced damage threshold for the proposed switch is measured and discussed. It is believed that potential applications of this novel polarization-independent electro-optic switch technology will be wide, especially for ultrafast high-power laser systems.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第3期185-193,共9页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.61137004,61405218,and 61535014)
关键词 SWITCH electro-optic switch laser damage optoelectronic material switch, electro-optic switch, laser damage, optoelectronic material
  • 相关文献

参考文献19

  • 1Li R, Wang C, Su G Z, Zhang K, Tang L and Li C 2007 Science & Technology Review 25 58.
  • 2Anthony W Y, Michael A K, David J H, James B A and Sun X 2010 Proc. SPIE 7578 757802.
  • 3Wang Y H, Wang J F, Jiang Y E, Bao Y, Li X C and Lin Z Q 2008 Chin. Opt. Lett. 6 841.
  • 4http://www.photoptech.com/main/products_gx/Electro-Optic%20Crystals.php.
  • 5Qiao L, Ye Q, Gan J L, Cai H W and Qu R H 2011 Opt. Commun. 284 3886.
  • 6Li K K 2002 US Patent Application 10/139857.
  • 7Kamzina L S, Ruan W, Li G, Zeng J and Ding A 2010 Magnetism and Ferroelectricity 52 2142.
  • 8Jiang H, Zou Y, Ming H, Zhang X and Chen M Y 2004 Proc. SPIE 5644 380.
  • 9Ye Q, Qiao L, Cai H W and Qu R H 2011 Opt. Lett. 36 2453.
  • 10Ye Q, Qiao L, Gan J L, Cai H W and Qu R H 2010 Opt. Lett. 35 4187.

同被引文献16

引证文献2

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部