Preparation and Nonlinear Optical Properties of CuCl-doped Nonlinear Optical Glasses: I. Preparation, Microstructure, and Optical properties

CuCl 미립자가 분산된 비선형 광학유리의 제조와 비선형 광특성: I. 제조와 미세조직 및 광특성

  • Published : 1997.04.01

Abstract

Alumino-borosilicate glasses containing nano-sized CuCl crystals for nonlinear optical application were prepared by the melting and precipitation process, and structural and optical properties were investigated by using XRD, TEM, SAXS, and optical spectroscopy. the average radius of the precipitated CuCl particles was about 2 nm. The blue shift of Z3 resonance peak with decreasing the precipitated CuCl particles size was found and the radius increased with decreasing the glass transition temperature of the matrix glass and with increasing the temperature and duration time of the precipitation heat treatment.

Keywords

References

  1. Nonlinear Optics v.1 Nonlinear optics: principles, materials, phenomena, and devices T. Kobayashi
  2. Nonlinear Optics v.1 Applications of nonlinear optical materials to optical communication devices S. Sudo
  3. Opt. Eng. v.34 no.1 Materials for all-optical devices P.W.E. Smith;S.D. Benjamin
  4. Appl. Opt. v.26 no.2 Research on nonlinear optical materials: an assessment D.H. Auston(et al.)
  5. Opt. Lett. v.18 no.6 All-optical power-controlled switching in wave mixing application to semiconductor-doped glasses H. Ma;A.S.L. Gomes;C.B. de Araujo
  6. Appl. Phys. Lett. v.63 no.26 Light-controlled beam deflector in semiconductor doped glasses H. Ma;C.B. de Araujo
  7. Opt. Lett. v.20 no.7 All-optical switching in two cascaded nonlinear directional couplers J.S. Aitchison;A. Villeneuve;G.I. Stegeman
  8. 요업재료의 과학과 기술 v.8 no.4 비선형 광학유리 한원택;윤영권
  9. J. Opt. Soc. Am. v.73 no.5 Degenerate four-wave mixing in semiconductor-doped glasses R.K. Jain;R.C. Lind
  10. Solid State Communications v.56 no.11 Quantum size effect in semiconductor micro-crystals A.I. Ekimov;Al.L. Efros;A.A. Onushchenko
  11. J. Appl. Phys. v.61 no.12 Quantum confinement effects of semiconducting microcrystallites in glass N.F. Borrelli;D.W. Hall;H.J. Holland;D.W. Smith
  12. Phys. Stat. Sol. (b) v.150 Nonlinear optics of semiconductor-doped glasses A.I. Ekimov;A.L. Efros
  13. J. Opt. Soc. Am. B v.6 no.4 Composite structures for the enhancement of nonlinear-optical susceptibility A.E. Neeves;M.H. Birnboim
  14. Progress in Optics XXIX Nonlinear Optics in Composite Materials C. Flytzanis;F. Hache;M.C. Klein;D. Ricard;Ph. Roussignol;E. Wolf(ed.)
  15. 요업학회지 v.34 no.4 CuCl 미립자가 분산된 비선형 광학유리의 제조와 비선형 광특성:Ⅱ. 비선형 광특성 윤영권;한원택;이민영
  16. 요업학회지 v.34 no.4 CuCl 미립자가 분산된 비선형 광학유리의 제조와 비선형 광특성 : Ⅲ. CuCl 반도체 미립자의 Bimodal분포 특성과 온도에 따른 광흡수도 윤영권;한원택
  17. SPIE Proc. v.1327 Characterization of quantum-confined CuCl microcrystals in a glassy matrix J.A. Ruller;D.A. Dutt;G.M. Williams;E.H. Friebele
  18. Small angle scattering of X-ray Theory of small-angle scattering A. Guinier;G. Fournet
  19. Sov. Phys. Semicond. v.16 no.7 Quantum size effect in the optical spectra of semiconductor microcrystals A.I. Ekimov;A.A. Onushchenko
  20. Optical spectroscopic properties of glass Optical spectroscopic properties of transition elements in glass G. Fuxi
  21. Introduction to semiconductor optics Pressure and temperature dependence of the bandgap N. Peyghambarian;S.W. Koch;A. Mysyrowicz
  22. Appl. Phys. Lett. v.57 no.14 Excitonic optical nonlinearity in quantum-confined CuCl-doped borosilicate glass B.L. Justus;M.E. Seaver;J.A. Ruller;A.J. Campillo
  23. Phys. Stat. Sol. (b) v.81 no.9 Band structure and optical properties of tetrahedrally coordinated Cu- and Ag-Halides A. Goldmann
  24. Appl. Opt. v.31 no.27 Optical absorption of small copper particles and the optical properties of copper R. Doremus;S.C. Kao;R. Garcia