융액인상법으로 Y3Al5O12 및 Nd: Y3Al5O12단결정을 육성하였다. 인상속도, 회전속도 및 Nd3+이온의 주입농도가 결정의 품질에 미치는 영향을 분석하였다. 광탄성효과및 화학부식 법을 이용하여 여러가지 종류의 결함을 검출하 고, 육성된 결정의 분광학적 성질과 레이저 기능성을 조사하였다. 양질의 단결정을 육성하기 위한 인상속도는 Nd3+이온의 주입농도에 따라 달라진다. Y3Al5O12단결정은 2∼4mm/hr, Nd3+이온 주입농도가 3.0∼3.5a/o 일때 0.6∼0.5mm/hr,4.Oa/o 이상일 때 04mm/hr 이하가 적당하였다. 회전속도가 27∼60rpm 일때 볼록하고, 80∼100rpm 일 때 오목한 고액계면을 형성하였다. 육성된 결정은 <111> 방위로 성장되었으며 격자상수는 12.Ol7A로 측정되었다. 결함으로서 core, (211)facet 줄무의, 금속입자 함유물, 전위 및 광학적 불균질상이 검출되었다. Y3AlO12단결정에 대한 Nd3+이온의 4준위 레이저 천이과정을 확인하고, 육성된 결정으로부터 직경 4.0mm 길이 63mm크기의 레이저 발진봉을 제조한 후 레이저 공진한 결과 lasing threshould 1.8lJ, slope efficiency 0.49%로 측정되었다.
융액인상법으로 Y3Al5O12 및 Nd: Y3Al5O12단결정을 육성하였다. 인상속도, 회전속도 및 Nd3+이온의 주입농도가 결정의 품질에 미치는 영향을 분석하였다. 광탄성효과및 화학부식 법을 이용하여 여러가지 종류의 결함을 검출하 고, 육성된 결정의 분광학적 성질과 레이저 기능성을 조사하였다. 양질의 단결정을 육성하기 위한 인상속도는 Nd3+이온의 주입농도에 따라 달라진다. Y3Al5O12단결정은 2∼4mm/hr, Nd3+이온 주입농도가 3.0∼3.5a/o 일때 0.6∼0.5mm/hr,4.Oa/o 이상일 때 04mm/hr 이하가 적당하였다. 회전속도가 27∼60rpm 일때 볼록하고, 80∼100rpm 일 때 오목한 고액계면을 형성하였다. 육성된 결정은 <111> 방위로 성장되었으며 격자상수는 12.Ol7A로 측정되었다. 결함으로서 core, (211)facet 줄무의, 금속입자 함유물, 전위 및 광학적 불균질상이 검출되었다. Y3AlO12단결정에 대한 Nd3+이온의 4준위 레이저 천이과정을 확인하고, 육성된 결정으로부터 직경 4.0mm 길이 63mm크기의 레이저 발진봉을 제조한 후 레이저 공진한 결과 lasing threshould 1.8lJ, slope efficiency 0.49%로 측정되었다.
Y3Al5O2 and Nd: Y3Al5012 single crystals were grown by Czochralskl technique. The effectt of pulling rate rotation rate, and doping level of Nd3+ ion on the crystal quality were studied Various types of defects were analysed by photo-elastic effect and chemical etching method Finally, spectroscopic ...
Y3Al5O2 and Nd: Y3Al5012 single crystals were grown by Czochralskl technique. The effectt of pulling rate rotation rate, and doping level of Nd3+ ion on the crystal quality were studied Various types of defects were analysed by photo-elastic effect and chemical etching method Finally, spectroscopic and laser poputies of grown crystal were measured. Optirmum pulling rate for good quality was dependant on the doping level of Nd3+ ion. It was found that the suitable pulling rates for pure Y3Al5O12 for 3.0∼3.5 a/o Nd3+ ion doped Y3Al5012 and for more than 40 a/o Nd3+ ion doped Y3Al5012 were 2∼4mm/hr, 0.6∼0.5mm/hr, and less than 0.4mm/hr respectively. Solid-liquid interface was convex at the rotation rate of 27∼60rpm, and concave at the rotation rate of 80∼100rpm. Growth axis was confired to direction and lattice parameter was measured to 12.017A. Core (211) facets,striations, inclusions of metal particles, dislocations and optical inhonngeneities were detected. Four level laser transition of Nd3+ion in YIAls012 single crystal were identified by the spectroscopic measurements. Laser rod with tam diameter and 63mm length was fabricated from grown Nd3+ Y3Al5012 sin91e crystals. 1.8lJ of lasing threshould and 0.49% of soope efficiency were measured by the Pulsed laser action.
Y3Al5O2 and Nd: Y3Al5012 single crystals were grown by Czochralskl technique. The effectt of pulling rate rotation rate, and doping level of Nd3+ ion on the crystal quality were studied Various types of defects were analysed by photo-elastic effect and chemical etching method Finally, spectroscopic and laser poputies of grown crystal were measured. Optirmum pulling rate for good quality was dependant on the doping level of Nd3+ ion. It was found that the suitable pulling rates for pure Y3Al5O12 for 3.0∼3.5 a/o Nd3+ ion doped Y3Al5012 and for more than 40 a/o Nd3+ ion doped Y3Al5012 were 2∼4mm/hr, 0.6∼0.5mm/hr, and less than 0.4mm/hr respectively. Solid-liquid interface was convex at the rotation rate of 27∼60rpm, and concave at the rotation rate of 80∼100rpm. Growth axis was confired to direction and lattice parameter was measured to 12.017A. Core (211) facets,striations, inclusions of metal particles, dislocations and optical inhonngeneities were detected. Four level laser transition of Nd3+ion in YIAls012 single crystal were identified by the spectroscopic measurements. Laser rod with tam diameter and 63mm length was fabricated from grown Nd3+ Y3Al5012 sin91e crystals. 1.8lJ of lasing threshould and 0.49% of soope efficiency were measured by the Pulsed laser action.
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