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LiYF4单晶的非真空坩埚下降法生长

Qishu FangHongbing ChenFang XuSujing WangZhe LiangChengyong Jiang

2010Chinese Optics LettersEngineering被引 15开放获取

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摘要

Using LiF and YF3 as starting materials, we prepare feed material from fluorides according to the molar ratio of LiF:YF3 = 51.5:48.5. The anhydrous LiYF4 polycrystalline material is synthesized via the fluoridation process with a dried HF flow at elevated temperature. By charging the feed material and adding a small amount of active carbon powder in a sealed platinum crucible, the crystal can be grown via the vertical Bridgman method in a nonvacuum atmosphere. This is possible because the oxidization and volatilization of the melt is avoided. Using optimum conditions, that is, a growth rate of 0.5-0.6 mm/h and a temperature gradient of 25-30 C/cm across the solid-liquid interface under a furnace temperature of 920-930 C, the colorless crystal LiYF4 with the size of 25 50 (mm) is successfully grown. The optical transmittance of the crystal is as high as 85% above the absorption edge at 190 nm. The induced absorption bands are observed below 700 nm in the transmission spectrum after the crystal is subjected to a high dose of -ray irradiation.

引用本文(GB/T 7714)

Qishu Fang, Hongbing Chen, Fang Xu, 等. LiYF4单晶的非真空坩埚下降法生长[J]. Chinese Optics Letters, 2010.

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DOI:https://doi.org/10.3788/col20100811.1071

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