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首页> 外文期刊>Analytical chemistry >CHARACTERIZATION OF AN ERBIUM DOPED FIBER AMPLIFIER AS A LIGHT SOURCE AND DEVELOPMENT OF A NEAR-INFRARED SPECTROPHOTOMETER BASED ON THE EDFA AND AN ACOUSTOOPTIC TUNABLE FILTER
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CHARACTERIZATION OF AN ERBIUM DOPED FIBER AMPLIFIER AS A LIGHT SOURCE AND DEVELOPMENT OF A NEAR-INFRARED SPECTROPHOTOMETER BASED ON THE EDFA AND AN ACOUSTOOPTIC TUNABLE FILTER

机译:掺OPE光纤放大器的表征及基于EDFA和声光可调滤光片的近红外分光光度计的研制

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摘要

A novel light source for the near-infrared region which has the highest intensity and widest spectral bandwidth of all near-IR light sources has been developed. The system is based on a single-mode fiber (about 18 m long) doped with Er3+ ion, The doped ion produces amplified spontaneous emission (ASE) in the near-IR region (from 1500 to 1600 nm) when it is excited by a diode laser at 980 mn, Because the diode laser is fusion-spliced directly to the doped fiber, the system is compact, all-solid-state, reliable, and stable and requires little maintenance, Its ASE output intensity was found to be comparable with those of diode lasers currently available for this near-IR region send is much higher than those of conventional halogen-tungsten lamps and the so-called (high-intensity) superluminescent light emitting diodes (SLEDs), Its spectral bandwidth is, however, much wider than those of the diode lasers and the SLEDs. Even higher intensity can be obtained from the doped fiber when a low-intensity (1 mW) light from a 1550-nm laser diode is introduced into the doped fiber, The intensity is enhanced (up to 7 times compared to the ASE) because the input light is amplified by the doped fiber. Furthermore, the output intensity of this erbium-doped fiber amplifier (EDFA) can be appropriately adjusted to provide relatively higher output intensity at any range of wavelengths (within this 1500-1600-nm region) by simply changing the temperature and/or the driven current of the input diode laser. Subsequently, an acoustooptic tunable filter was used to provide a means to spectrally tune the EDFA rapidly and to develop an all-solid-state, compact near-IR spectrophotometer which not only is very sensitive, stable, and reliable but also has a very high throughput. This spectrophotometer can detect water in ethanol at a limit of detection of 10 ppm, More importantly, the high throughput makes it possible to use the instrument to measure spectra of highly absorbing samples (e,g,, absorption spectrum of 1.0 M Pr3+ aqueous solution through four sheets of paper); measurements which are currently not possible with halogen-tungsten lamp-based spectrophotometers.
机译:已经开发出一种用于所有近红外光源的强度最高,光谱带宽最宽的近红外光源。该系统基于掺有Er3 +离子的单模光纤(约18 m长),当被离子激发时,掺杂的离子会在近红外区域(1500至1600 nm)产生放大的自发发射(ASE)。 980纳米的二极管激光器,由于该二极管激光器直接熔接在掺杂的光纤上,因此该系统紧凑,全固态,可靠,稳定并且几乎不需要维护,其ASE输出强度可与当前可用于此近红外区域的二极管激光器的发射功率远高于传统的卤素钨灯和所谓的(高强度)超发光发光二极管(SLED),但是其光谱带宽却要高得多。比二极管激光器和SLED的宽。当将来自1550 nm激光二极管的低强度(1 mW)光引入到掺杂光纤中时,可以从掺杂光纤中获得更高的强度。强度提高了(与ASE相比提高了7倍),因为输入光被掺杂的光纤放大。此外,可以通过简单地改变温度和/或驱动,适当地调节这种掺fiber光纤放大器(EDFA)的输出强度,以在任何波长范围(在此1500-1600nm范围内)提供相对较高的输出强度。输入二极管激光器的电流。随后,使用声光可调谐滤波器提供了一种手段,以快速对EDFA进行光谱调谐,并开发出一种全固态,紧凑型近红外分光光度计,该分光光度计不仅非常灵敏,稳定和可靠,而且具有很高的灵敏度。吞吐量。该分光光度计可以检测到乙醇中的水,检测限为10 ppm。更重要的是,高通量使得可以使用该仪器测量高吸收样品的光谱(例如1.0 M Pr3 +水溶液的吸收光谱)。通过四张纸);卤素钨灯分光光度计目前无法进行的测量。

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