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Enhanced Raman gain coefficients and bandwidths of sodium-niobium-phosphate glasses for Raman gain media

机译:增强拉曼磷酸钠玻璃的增强拉曼增益系数和带宽,用于拉曼增益介质

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Raman amplification was demonstrated in the early 1970s, but the invention of erbium-doped fiber amplifiers (EDFA) overshadowed the interest in it. Today, Raman scattering has again become a competitive approach for optical amplification because it is only restricted by the pump wavelength and Raman active modes of the gain medium. Pure- silica and germanium-doped silica fibres, currently utilized as Raman gain media in telecommunications, have quite low Raman gain coefficients and a limited usable spectral bandwidth of approx. 5 THz. Therefore, the investigation of materials possessing both large Raman gain coefficients and broader spectral bandwidth than fused silica is becoming necessary to satisfy the increasing telecommunications demands. This paper presents the Raman spectroscopy characterization of Erbium- or Samarium- doped sodium-niobium phosphate glasses. Spontaneous Raman scattering measurements allowed the identification of groups formed by glass formers and oxygen and of the type of chains. Moreover, Raman spectra have been used to evaluate the Raman gain of such materials by means of a comparison with pure silica glass. The results reveal the presence of NbO6 octahedra and Nb-O-P-Nb-O mixed chains. A broadening of bandwidth and a significant enhancement (~24 times) of gain coefficient G with respect to conventional silica glasses are also demonstrated.
机译:在20世纪70年代初进行了拉曼扩增,但掺铒光纤放大器(EDFA)的发明黯然失色。如今,拉曼散射再次成为光学放大的竞争方法,因为它仅限于增益介质的泵波长和拉曼有源模式。纯二氧化硅和锗掺杂的二氧化硅纤维目前用于电信中的拉曼增益介质,具有相当低的拉曼增益系数和有限的可用光谱带宽约为。 5星。因此,对具有大于熔融二氧化硅的大型拉曼增益系数和更广泛的光谱带宽的材料正在变得必要,以满足增加的电信需求。本文介绍了铒或钐掺杂磷酸铌玻璃的拉曼光谱表征。自发拉曼散射测量允许识别玻璃造型剂和氧气和氧气的组和链的类型。此外,通过与纯二氧化硅玻璃的比较,已使用拉曼光谱来评估这些材料的拉曼增益。结果揭示了NBO 6 八面体和Nb-O-p-Nb-O混合链的存在。还证明了与常规二氧化硅玻璃相对于常规硅胶增益系数G的带宽和显着增强(〜24倍)的扩大。

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