期刊文献+

IR Spectra Analysis of SiO_2-TiO_2-GeO_2 Gel Glass of CO_2 Laser Transmitting Hollow Waveguide

IR Spectra Analysis of SiO_2-TiO_2-GeO_2 Gel Glass of CO_2 Laser Transmitting Hollow Waveguide
下载PDF
导出
摘要 Both titanium and germanium were introduced into silicon dioxide system by sol-gel method to move its region of anomalous dispersion caused by IR resonance absorption towards the wavelength of CO 2 laser.It is indicated by IR absorption spectra that as the content of SiO 2 decreases in this glass system TiO 2 and GeO 2 tends to exist in their own phases.As for the gel glass with a composition of 40SiO 2·30TiO 2·30GeO 2,when the temperature is below 600℃,germanium atoms exist mainly in Ge-O-Ge bonds.With the temperature increasing from 800℃ to 1000℃, titanium atoms in Si-O-Ti bonds almost transform into Ti-O-Ti bonds.Furthermore,a large number of Si-O-Ti and Si-O-Ge bonds formed when the temperature approaches 800℃,which makes a notable IR absorption band round the wavelength of CO 2 laser.Therefore, sol-gel based SiO 2-TiO 2-GeO 2 gel glass is a candidate material for CO 2 laser hollow waveguide. Both titanium and germanium were introduced into silicon dioxide system by sol-gel method to move its region of anomalous dispersion caused by IR resonance absorption towards the wavelength of CO 2 laser.It is indicated by IR absorption spectra that as the content of SiO 2 decreases in this glass system TiO 2 and GeO 2 tends to exist in their own phases.As for the gel glass with a composition of 40SiO 2·30TiO 2·30GeO 2,when the temperature is below 600℃,germanium atoms exist mainly in Ge-O-Ge bonds.With the temperature increasing from 800℃ to 1000℃, titanium atoms in Si-O-Ti bonds almost transform into Ti-O-Ti bonds.Furthermore,a large number of Si-O-Ti and Si-O-Ge bonds formed when the temperature approaches 800℃,which makes a notable IR absorption band round the wavelength of CO 2 laser.Therefore, sol-gel based SiO 2-TiO 2-GeO 2 gel glass is a candidate material for CO 2 laser hollow waveguide.
作者 敬承斌
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2002年第4期54-57,共4页 武汉理工大学学报(材料科学英文版)
基金 theFoundationofKeyTeachersofMinistryofEducation ,China
关键词 hollow waveguide SiO 2-TiO 2-GeO 2 gel glass IR spectra CO 2 laser hollow waveguide SiO 2-TiO 2-GeO 2 gel glass IR spectra CO 2 laser
  • 相关文献

参考文献10

  • 1C. A. Worrell.Infrared optical constants for CO2 laser waveguide materials[J].Journal of Materials Science.1986(3)
  • 2T Hidaka,K Kumada,J Shimada,and T Morikawa.GeO2 -Zno-K2O Glass as the Cladding Material of 940cm-1 CO2 Laserlight TranSmitting Hollow-core Waveguide[].Journal of Applied Physics.1982
  • 3Han Jian-jun,LiuJixiang,Zhou Xue-dong,Mao Yu-lan.Influence of Sb2O3 and PbO Content on Glass Properties of SiO2Based for Hollow Waveguides[].Journal of Wuhan Univeristy of Technology.1998
  • 4Yuuji Hirai,Takumi Fukuda and Kanji Kubota.Optical Properties of SiO2 -GeO2 Glasses Made by Sol-gel Method[].Journal of Non crystalline Solids.1986
  • 5T Hidaka.Loss Calculations of the Hollow-core, oxide-glasscladding, Middle-infrared Optical Waveguide[].Journal of Applied Physics.1982
  • 6I Haruvi-Busnach,J Dror,and N Critoru.Chalcogenide Glasses Ge—Sn—Se, Ge—Se—Te, and Ge—Sn—Se—Te for Infrared Optical Fibers[].Journal of Materials Research.1990
  • 7N Croitoru,A Inbeg,M Oksman,M.Ben-David.Hollow Silica,Metal and Plastic Waveguides for Hard Tissue Medical ApplicatIon[].Proceedings of SPIE the International Society for Optical Engineering.
  • 8Steven J Saggese,Tanes A Harrington,and George H Sigel,Jr.Attenuation of Incoherent Infrared Radiation in Hollow Sapphire and Silica Waveguides[].Optics Letters.1991
  • 9T Hidaka,T Morikawa,and J Shinada.Hollow-core Oxide-glass Cladding Optical Fibers for Middle-infrared Region[].Journal of Applied Physiology.1981
  • 10S Shibata,T Kitagwa,F Hana W A Optical and M Horiguchi.Fabrication of SiO2 -GeO2 Core Optical Fibers by the Sol-gel Method[].Journal ofNon-Crystalline Solids.1986

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