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마그네트론 음극의 자석 배열에 따른 방전의 형상 변화 연구

A Study of Discharge Shape Changes by Magnet Arrangements in a Magnetron Cathode

  • 지정은 (군산대학교 공과대학 신소재.나노화학공학부, 플라즈마 소재 응용 센터) ;
  • 주정훈 (군산대학교 공과대학 신소재.나노화학공학부, 플라즈마 소재 응용 센터)
  • Jee, Jung-Eun (Department of Materials Science and Engineering Plasma Materials Research Center, Kunsan National University) ;
  • Joo, Jung-Hoon (Department of Materials Science and Engineering Plasma Materials Research Center, Kunsan National University)
  • 발행 : 2008.06.30

초록

A new convenient magnet array module is designed to investigate effects of magnetic field array on magnetron discharge characteristics. Magnetic field analysis showed good agreement of measured discharge region by a CCD device which has a high quantum efficiency over visible wavelength range. OES (optical emission spectroscopy) showed major emission peaks are from electronic transitions in 400 nm range and 800 nm range. Effects of driving voltage characteristics were analyzed in a point of electron drift trajectories and ionizing collision frequencies. Pulsed dc with a fast rising and falling time was analyzed to have potential to increase ionization collisions by putting a burst of hot electrons and to raise sheath potential. From measured voltage and current waveform, maximum of -1000 V peak was generated with $-400\;V_{rms}$ conditions. Possibility of a properly designed magnetron cathode was shown to be used as a melting device. Cu was successfully melted with power density of a several tens of $W/cm^2$.

키워드

참고문헌

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