Morello Giovanni, Camposeo Andrea, Moffa Maria, Pisignano Dario
Istituto Nanoscienze, Consiglio Nazionale Delle Ricerche (CNR) , Via Arnesano, I-73100 Lecce, Italy.
ACS Appl Mater Interfaces. 2015 Mar 11;7(9):5213-8. doi: 10.1021/am508046g. Epub 2015 Feb 24.
All-optical signal processing is the focus of much research aiming to obtain effective alternatives to existing data transmission platforms. Amplification of light in fiber optics, such as in Erbium-doped fiber amplifiers, is especially important for efficient signal transmission. However, the complex fabrication methods involving high-temperature processes performed in a highly pure environment slow the fabrication process and make amplified components expensive with respect to an ideal, high-throughput, room temperature production. Here, we report on near-infrared polymer fiber amplifiers working over a band of ∼20 nm. The fibers are cheap, spun with a process entirely carried out at room temperature, and shown to have amplified spontaneous emission with good gain coefficients and low levels of optical losses (a few cm(-1)). The amplification process is favored by high fiber quality and low self-absorption. The found performance metrics appear to be suitable for short-distance operations, and the large variety of commercially available doping dyes might allow for effective multiwavelength operations by electrospun amplified fiber optics.
全光信号处理是众多研究的焦点,旨在获得现有数据传输平台的有效替代方案。光纤中的光放大,例如掺铒光纤放大器中的光放大,对于高效信号传输尤为重要。然而,复杂的制造方法涉及在高纯度环境中进行的高温工艺,这减缓了制造过程,并使放大组件相对于理想的高通量室温生产而言成本高昂。在此,我们报道了工作在约20纳米波段的近红外聚合物光纤放大器。这些光纤价格低廉,采用完全在室温下进行的工艺纺丝而成,并且显示出具有良好增益系数和低光损耗水平(几厘米⁻¹)的放大自发辐射。高光纤质量和低自吸收有利于放大过程。所发现的性能指标似乎适用于短距离操作,并且大量市售的掺杂染料可能允许通过电纺放大光纤实现有效的多波长操作。