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Crystal growth and spectroscopic studies of Nd-doped apatite crystals as active media for 944.11-nm laser

机译:掺钕磷灰石晶体作为944.11 nm激光的活性介质的晶体生长和光谱研究

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Abstract: We have grown neodymium doped mixed apatite crystals, (Sr$- x$/Ba$-1$MIN@x$/)$-5$/(PO$-4$/)$-3$/F, Sr$-5$/(P$- 1$MIN@x$/V$-x$/O$-4$/)$-3$/F, and Ba$-5$/(P$-1$MIN@x$/V$- x$/O$-4$/)$-3$/F, and spectroscopically studied them as potential gain media for a laser source for atmospheric water sensing operating at 944.11 nm. We conclude that an appropriate apatite host material for a 944.11 nm laser should be a mixture of Sr$-5$/(PO$-4$/)$-3$/F with a small fraction of Ba$-5$/(PO$-4$/)$-3$/F. The precise wavelength tuning around 944.11 nm can be accomplished by varying the host composition, temperature, and threshold population inversion. In apatite crystals of mixed composition, the amplified spontaneous emission loss at 1.06 $mu@m is predicted to be significantly smaller than that in the end members.!14
机译:摘要:我们已经生长了掺钕的磷灰石混合晶体,(Sr $-x $ / Ba $ -1 $ MIN @ x $ /)$-5 $ /(PO $ -4 $ /)$-3 $ / F,Sr $ -5 $ /(P $ -1 $ MIN @ x $ / V $ -x $ / O $ -4 $ /)$-3 $ / F和Ba $ -5 $ /(P $ -1 $ MIN @ x $ / V $-x $ / O $ -4 $ /)$-3 $ / F,并在光谱学上研究了它们作为用于944.11 nm的大气水感测激光源的潜在增益介质。我们得出结论,对于944.11 nm激光,合适的磷灰石基质材料应该是Sr $ -5 $ /(PO $ -4 $ /)$-3 $ / F和少量Ba $ -5 $ /( PO $ -4 $ /)$-3 $ / F。可以通过改变主体组成,温度和阈值种群反转来实现944.11 nm附近的精确波长调谐。在混合组成的磷灰石晶体中,预计在1.06μm处放大的自发发射损耗将显着小于末端构件中的自发发射损耗。14

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