The Effect of Energy-absorbing layers on Micro-patterning of Magnetic Metal Films using Nd:YAG Laser

Nd:YAG Laser를 이용한 자성금속막의 패턴 식각에 있어서 에너지 흡수층이 미치는 영향

  • 이주현 (선문대학교 재료화학공학부) ;
  • 채상훈 (선문대학교 재료화학공학부) ;
  • 서영준 (선문대학교 재료화학공학부) ;
  • 송재성 (한국전기연구소 전기재료연구부) ;
  • 민복기 (한국전기연구소 전기재료연구부) ;
  • 안승준 (선문대학교 신소재과학과)
  • Published : 2000.06.01

Abstract

The laser patterning of sputter-deposited CoNdZr/Cu/CoNbZr multi-layered films had been tried using Nd:YAG laser. However generally it is very difficult to remove metal films because of their high reflectance of the laser on the surfaces. As a counterproposal for this problem authors for the first time tried to deposit energy-absorbing layers on the metal films and then irradiated the laser on the surfaces of energy-absorbing layers. Here the energy-absorbing layers consisted of laser energy-absorbing fine powders and binding polymers. Three kinds of powders for the energy-absorbing layers had been used to see the difference in the pattern formation with the degree of laser energy absorption. They were electrically conductive silver powders insulating BaTiO$_3$powder and semiconducting carbon powder. Remarkable difference in width of the formed pattern and the roughness of pattern edge were observed with the characteristic of the powder for the energy-absorbing layer. The pattern width using carbon paste was about three times larger than that using BaTiO$_3$paste. It was observed that the energy-absorbing layer with carbon was the most effective on this micro-patterning.

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References

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