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Active optical waveguides based on Er- and Er/Yb-doped silicate glasses

机译:基于掺Er和Er / Yb的硅酸盐玻璃的有源光波导

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The growing interest for the use of integrated optical (IO) amplifiers in optical fibre telecom systems has led to depth search for ever better rare-earth-doped glassy materials. In the present paper we report some properties of a set of Er3+/Yb3+-doped soda-lime silicate glasses. Several batches were prepared, all with the same base mol% composition (73SiO(2)-1Al(2)O(3)-0.4P(2)O(5)-14Na(2)O-0.6K(2)O-11CaO) containing Er2O3 (0.32-0.48%) and Yb2O3 (0.63 and 0.78%). The resulting glasses were cut into rectangular plates about 1 mm thick, and one surface was optically polished. Planar and channel waveguides were subsequently obtained in these plates by Ag+-Na- ion-exchange. Spectroscopic analysis showed that the fluorescence emission peak for all the samples was observed at 1532 +/- 1 nm, with a full-width at half-maximum equal to 19 nm. Measurements of the lifetime of the metastable state of Er3+ were performed upon excitation by laser pumps at 514.5 and 980 nm, and times of the order of 7 ms were measured in most samples. The intensity of the up-conversion fluorescence was less in Er3+/Yb3+ co-doped glasses than in Er3+-doped ones. Preliminary measurements of the transmitted power at 1540 nm in channel waveguides made in the glass doped with nominal 0.32 mol% of Er2O3 have confirmed their potential of achieving optical gain; in fact, a signal enhancement (internal gain) >1 dB/cm was measured with more than 1 mW input signal. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 25]
机译:对于在光纤电信系统中使用集成光学(IO)放大器的兴趣日益浓厚,这导致人们需要对稀土掺杂玻璃质材料进行更深入的研究。在本文中,我们报告了一组掺Er3 + / Yb3 +的钠钙硅酸盐玻璃的一些性质。准备了几批,所有批次都具有相同的基础摩尔%成分(73SiO(2)-1Al(2)O(3)-0.4P(2)O(5)-14Na(2)O-0.6K(2)O -11CaO)包含Er2O3(0.32-0.48%)和Yb2O3(0.63和0.78%)。将得到的玻璃切成约1mm厚的矩形板,并光学抛光一个表面。随后通过Ag + -Na-离子交换在这些板中获得了平面和通道波导。光谱分析表明,所有样品的荧光发射峰均在1532 +/- 1 nm处观察到,半峰全宽等于19 nm。 Er3 +的亚稳态寿命的测量是通过激光泵在514.5和980 nm处激发后进行的,并且在大多数样品中测量的时间约为7 ms。在掺Er3 + / Yb3 +的玻璃中,上转换荧光的强度要小于掺Er3 +的玻璃。在掺有标称0.32摩尔%的Er2O3的玻璃中制成的通道波导中,在1540 nm处的传输功率的初步测量已证实它们具有实现光学增益的潜力;实际上,在超过1 mW的输入信号下测得的信号增强(内部增益)> 1 dB / cm。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:25]

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