DOI QR코드

DOI QR Code

Study of Damage in Germanium Optical Window Irradiated by a Near-infrared Continuous Wave Laser

근적외선 연속발진 레이저 조사에 의한 게르마늄 광학창 손상 연구

  • Lee, Kwang Hyun (Advanced Technology Agile Development Center, Institute of Defense Advanced Technology Research, Agency for Defense Development) ;
  • Shin, Wan-Soon (Advanced Technology Agile Development Center, Institute of Defense Advanced Technology Research, Agency for Defense Development) ;
  • Kang, Eung-Cheol (Advanced Technology Agile Development Center, Institute of Defense Advanced Technology Research, Agency for Defense Development)
  • 이광현 (국방과학연구소 국방고등기술원 첨단기술연구센터) ;
  • 신완순 (국방과학연구소 국방고등기술원 첨단기술연구센터) ;
  • 강응철 (국방과학연구소 국방고등기술원 첨단기술연구센터)
  • Received : 2013.09.09
  • Accepted : 2013.12.20
  • Published : 2014.02.05

Abstract

The damage in germanium (Ge) optical window irradiated by a near-infrared continuous wave (CW) laser was studied. Laser-induced heating and melting process were surveyed, and the specific laser power and the irradiance time to melt were estimated by numerical simulation. The experiments were also carried out to investigate the macro and micro structure change on Ge window. Results showed that the surface deformation was formed by melting and resolidification process, the damaged surface had a polycrystalline phase, and the transmittance as an optical performance factor in mid-infrared region was decreased. We confirmed that an abnormal polycrystalline phase and surface deformation effect such as hillock formation and roughness increase reduced the transmittance of Ge window and were the damage mechanism of CW laser induced damage on Ge window.

Keywords

References

  1. M. Bertolotti, F. De Pasquale, P. Marietti, D. Sette, and G. Vitali, "Laser Damage on Semiconductor Surfaces," J. Appl. Phys., Vol. 38, No. 10, pp. 4088-4090, 1967. https://doi.org/10.1063/1.1709078
  2. X. Wang, Y. Qin, B. Wang, L. Zhang, Z. Shen, J. Lu, and X. Ni, "Numerical and Experimental Study of the Thermal Stress of Silicon Induced by a Millisecond Laser," Appl. Optics, Vol. 50, No. 21, pp. 3725-3732, 2011. https://doi.org/10.1364/AO.50.003725
  3. A. V. Kuanr, S. K. Bansal, and G. P. Srivastava, "Laser-induced Damage in InSb at 1.06 ${\mu}m$ Wavelength-a Comparative Study with Ge, Si and GaAs," Opt. Laser Technol., Vol. 28, No. 5, pp. 345-353, 1996. https://doi.org/10.1016/0030-3992(95)00115-8
  4. K. Diener, L. Gernandt, J.-P. Moeglin, and P. Ambs, "Study of the Influence of the Nd:YAG Laser Irradiation at 1.3 ${\mu}m$ on the Thermal-mechanicaloptical Parameters of Germanium," Opt. Laser Eng., Vol. 43, No. 11, pp. 1179-1192, 2005. https://doi.org/10.1016/j.optlaseng.2004.12.008
  5. W.-S. Shin, H.-J. Choi, B.-S. Park, J.-H. Lee, E.-C. Kang, "Performance Analysis of the Germanium Window Under 1.07 ${\mu}m$ High Power Laser Irradiation," 2009 Conference of KIMST, 2009.
  6. C. Claeys and E. Simoen, Germanium-based Technologies (Elsevier, 2007), Chap. 1. p. 19.
  7. D. C. Harris, "Durable 3-5 ${\mu}m$ Transmitting Infrared Window Materials," Infrared Phys. Techn. Vol. 39, No. 4, pp. 185-201, 1998. https://doi.org/10.1016/S1350-4495(98)00006-1
  8. C. R. Swaminathan and V. R. Voller, "A General Enthalpy Method for Modeling Solidification Processes," Metall. Mater. Tras. B, Vol. 23B, No. 5, pp. 651-664, 1992.
  9. A. Goldsmith, T. E. Waterman, and H. J. Hirschborn, "Germanium (Ge)" in Handbook of Thermophysical Properties of Solid Materials (Macmillan, 1961).
  10. A. S. Okhotin, A. S. Pushkarskii and V. V. Gorbachev, "Germanium (Ge)" in Thermophysical Properties of Semiconductors (Atom Publ. House, 1972).
  11. J. K. Chen, D. Y. Tzou, and J. E. Beraun, "Numerical Investigation of Ultrashort Laser Damage in Semiconductors," Int. J. Heat Mass Tran., Vol. 48, No. 3-4, pp. 501-509, 2005. https://doi.org/10.1016/j.ijheatmasstransfer.2004.09.015
  12. M. L. Dawes, J. T. Dickinson, L. C. Jensen, and S. C. Langford, "Structures Obtained from Resolidification of Flame-melted Single-crystal Germanium," Nanotechnology, Vol. 5, No. 2, pp. 101-112, 1994. https://doi.org/10.1088/0957-4484/5/2/006
  13. A. P. Singh, A. Kapoor, K. N. Tripathi, "Recrystallization of Germanium Surfaces by Femtosecond Laser Pulses," Opt. Laser Technol. Vol. 35, No. 2, pp. 87-97, 2003. https://doi.org/10.1016/S0030-3992(02)00146-9
  14. D. C. Emmony, N. J. Phillips, J. H. Toyer, and L. J. Willis, "The Topography of Laser-irradiated Germanium", J. Phys. D Appl. Phys,. Vol. 8, No. 13, pp. 1472-1479, 1975. https://doi.org/10.1088/0022-3727/8/13/008
  15. C. Claeys and E. Simoen, Germanium-based Technologies (Elsevier, 2007), Chap. 1. p. 18.
  16. A. K. Jena and M. C. Chaturvedi, Phase Transformation in Materials (Prentice Hall, 1992), Chap. 6. p. 192
  17. JCPDS-ICDD, PDF-2 database Sets 1-42 (1992) for Ge file No. 4-0545 and GeIII file No. 17-900.