首页> 外文会议>Conference on Optifab >Commercializing Potassium Terbium Fluoride, KTF (KTb3F10) Faraday Crystals for High Laser Power Optical Isolator Applications
【24h】

Commercializing Potassium Terbium Fluoride, KTF (KTb3F10) Faraday Crystals for High Laser Power Optical Isolator Applications

机译:用于高激光功率光学隔离器应用的氟化钾Ter KTF(KTb3F10)法拉第晶体

获取原文

摘要

Many scientific lasers and increasingly industrial laser systems operate in >500W and kW output power regime, require high-performance optical isolators to prevent disruptive light feedback into the laser cavity. The optically active Faraday material is the key optical element inside the isolator. SYNOPTICS has been supplying the laser market with Terbium Gallium Garnet (TGG -Tb3Ga5012) for many years. It is the most commonly used material for the 650-1100nm range and the key advantages for TGG include its cubic crystal structure for alignment free processing, little to no intrinsic birefringence, and ease of manufacture. However, for high-power laser applications TGG is limited by its absorption at 1064nm and its thermo-optic coefficient, dn/dT. Specifically, thermal lensing and depolarization effects become a limiting factor at high laser powers. While TGG absorption has improved significantly over the past few years, there is an intrinsic limit. Now, SYNOPTICS is commercializing the enhanced new crystal Potassium Terbium Fluoride KTF (KTb3F10) that exhibits much smaller nonlinear refractive index and thermo-optic coefficients, and still exhibits a Verdet constant near that of TGG. This cubic crystal has relatively low absorption and thermo-optic coefficients. It is now fully characterized and available for select production orders. At OPTIFAB in October 2017 we present recent results comparing the performance of KTF to TGG in optical isolators and show SYNOPTICS advances in large volume crystal growth and the production ramp up.
机译:许多科学激光器和越来越多的工业激光器系统在> 500W和kW的输出功率范围内运行,需要高性能的光学隔离器来防止破坏性的光反馈到激光腔中。光学活性的法拉第材料是隔离器内部的关键光学元件。 SYNOPTICS多年来一直向激光市场提供Ter镓石榴石(TGG -Tb3Ga5012)。它是650-1100nm范围内最常用的材料,TGG的主要优势包括其立方晶体结构可进行无取向处理,几乎没有或根本没有双折射,并且易于制造。但是,对于大功率激光应用,TGG受其在1064nm处的吸收和其热光系数dn / dT的限制。具体而言,热透镜和去偏振效应成为高激光功率下的限制因素。尽管过去几年中TGG的吸收已有显着改善,但存在固有的局限性。现在,SYNOPTICS正在将增强型新型氟化钾氟化钾晶体(KTb3F10)商业化,该晶体具有较小的非线性折射率和热光系数,并且仍具有接近TGG的Verdet常数。这种立方晶体具有相对较低的吸收系数和热光系数。现在,它具有完整的特性,可用于某些生产订单。在2017年10月的OPTIFAB上,我们展示了最近的结果,比较了KTF和TGG在光学隔离器中的性能,并显示SYNOPTICS在大批量晶体生长和产量提高方面取得了进步。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号