...
首页> 外文期刊>Scientific reports. >Rapid-Response Low Infrared Emission Broadband Ultrathin Plasmonic Light Absorber
【24h】

Rapid-Response Low Infrared Emission Broadband Ultrathin Plasmonic Light Absorber

机译:快速响应低红外发射宽带超高压等级光吸收器

获取原文
           

摘要

Plasmonic nanostructures can significantly advance broadband visible-light absorption, with absorber thicknesses in the sub-wavelength regime, much thinner than conventional broadband coatings. Such absorbers have inherently very small heat capacity, hence a very rapid response time, and high light power-to-temperature sensitivity. Additionally, their surface emissivity can be spectrally tuned to suppress infrared thermal radiation. These capabilities make plasmonic absorbers promising candidates for fast light-to-heat applications, such as radiation sensors. Here we investigate the light-to-heat conversion properties of a metal-insulator-metal broadband plasmonic absorber, fabricated as a free-standing membrane. Using a fast IR camera, we show that the transient response of the absorber has a characteristic time below 13?ms, nearly one order of magnitude lower than a similar membrane coated with a commercial black spray. Concurrently, despite the small thickness, due to the large absorption capability, the achieved absorbed light power-to-temperature sensitivity is maintained at the level of a standard black spray. Finally, we show that while black spray has emissivity similar to a black body, the plasmonic absorber features a very low infra-red emissivity of almost 0.16, demonstrating its capability as selective coating for applications with operating temperatures up to 400°C, above which the nano-structure starts to deform.
机译:等离子体纳米结构可以显着提高宽带可见光吸收,具有副波长的吸收体厚度,比传统宽带涂层更薄。这种吸收器具有本质上的热容量,因此是非常快速的响应时间和高光功率 - 温度敏感性。另外,可以探测它们的表面发射率以抑制红外热辐射。这些能力使等离子体吸收剂具有快速光热应用的候选者,例如辐射传感器。在这里,我们研究了金属 - 绝缘体 - 金属宽带等离子体吸收器的光热转换特性,制成了作为独立膜。使用快速IR相机,我们表明吸收器的瞬态响应具有低于13°的特征时间,MS,几乎比涂有商业黑色喷雾的类似膜的数量级。同时,尽管厚度小,由于较大的吸收能力,所以实现的吸收光功率 - 温度敏感性保持在标准黑色喷雾的水平。最后,我们表明,虽然黑色喷雾具有类似于黑色的发射率,因此等离子体吸收器具有非常低的红外线发射率,几乎为0.16,将其作为选择性涂层的能力,以用于高达400°C的操作温度,其纳米结构开始变形。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号