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Lanthanide nanoparticle doped low-loss sol-gel amplifier materials

机译:镧系元素掺杂低损耗溶胶-凝胶放大器材料

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Organic-inorganic hybrid sol-gel materials have attracted increasing attention in recent years as low-cost, rugged materials for integrated optical devices such as optical couplers, splitters, and electro-optic modulators. These materials can be easily processed by spin-coating, wet-etching photolithography, and low-temperature baking. Precise control of waveguide core-cladding" refractive indices produces well-confined low-loss propagation and good matching of the absolute refractive index to that of fused silica results in low optical coupling loss to optical fiber. The increased thermal and mechanical stability of these materials, relative to optical polymers, results in numerous packaging options and improved reliability. However organic-inorganic hybrid sol-gel materials have not yet been often used as host of active dopants such as erbium (Ⅲ) ions for 1550 nm optical amplification. This limitation owes primarily to matrix and chelate dominated nonradiative relaxation processes, as high phonon energy OH and OH-like oscillators can bridge off the energy from the excited erbium (Ⅲ) ions at very high rates. Different strategies have been proposed to protect erbium (Ⅲ) ions from matrix and chelate quenching, including host and ligand fluorination, and inorganic microstructure shielding. Here we report on our work of encapsulating erbium (Ⅲ) ions in transparent, refractive index matched, and highly re-dispersible lanthanum phosphate nanoparticles and the work of examining the optical properties of these nanoparticles as active dopants in organic-inorganic hybrid sol-gels adopting 2-methacryloxypropyl trimethoxysilane (MAPTMS) as a precursor. 980nm laser pumped photoluminescence at 1535nm was obtained from solid bulk samples of 300mg La_(.99)Er_(.01)PO_4 nanoparticles doped in 1mL hybrid sol-gel. Thick bulk samples of this composition exhibited exceptional clarity and little trace of nanoparticle scattering effects. The lifetime of the nanoparticle doped hybrid sol-gel composite was measured to be 220ns, indicating an intermediate relaxation rate between that of an erbium organic complex and annealed erbium doped glass. La_(.99)Er_(.01)PO_4 nanoparticle doped hybrid sol-gel films were also prepared and the refractive index was measured to be 1.4966 at 1550nm, which is very close to that of optical fiber and provides a suitable index difference from an undoped and metal oxide tuned sol-gel at 1.4870 to comprise an efficient single-mode waveguide system.
机译:近年来,有机-无机杂化溶胶-凝胶材料作为集成光学设备(如光耦合器,分光器和电光调制器)的低成本,坚固耐用材料,受到越来越多的关注。这些材料可以通过旋涂,湿法蚀刻光刻和低温烘烤轻松加工。精确控制波导芯-包层的折射率可产生良好的低损耗传播,并且绝对折射率与熔融石英的折射率具有良好的匹配性,从而降低了与光纤的光耦合损耗。这些材料的热和机械稳定性提高了相对于光学聚合物,它提供了许多封装选择并提高了可靠性,但是有机无机混合溶胶-凝胶材料尚未经常用作活性掺杂剂(如离子)的主体,以用于1550 nm光学放大。归因于基质和螯合物主导的非辐射弛豫过程,因为高声子能量OH和类似OH的振荡器可以以很高的速率桥接被激发的(离子的能量,因此提出了多种保护strategies的策略。基质和螯合物的猝灭离子,包括主体和配体的氟化,以及无机微结构的屏蔽作用。在透明,折射率匹配且高度可再分散的磷酸镧纳米粒子中包埋((Ⅲ)离子,并研究采用2-甲基丙烯酰氧基丙基三甲氧基硅烷(MAPTMS)的有机-无机杂化溶胶-凝胶中这些纳米粒子作为活性掺杂剂的光学性质)作为先驱。从掺杂在1mL混合溶胶-凝胶中的300mg La _(。99)Er _(。01)PO_4纳米颗粒的固体大块样品中获得了1535nm处的980nm激光泵浦光致发光。这种成分的厚块样品显示出异常的透明度,几乎没有纳米颗粒散射效应的痕迹。掺杂纳米颗粒的杂化溶胶-凝胶复合材料的寿命测得为220ns,表明在organic有机配合物和退火的do掺杂玻璃的中间弛豫率之间。还制备了La _(。99)Er _(。01)PO_4掺杂的纳米杂化溶胶-凝胶薄膜,在1550nm处测得的折射率为1.4966,与光纤的折射率非常接近,并提供了与适当的折射率差。未掺杂且金属氧化物调谐的溶胶-凝胶在1.4870处构成了有效的单模波导系统。

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