Martín L L, Pérez-Rodríguez C, Haro-González P, Martín I R
Departamento de Física Fundamental y Experimental, Universidad de La Laguna, S/C de Tenerife, Spain.
Opt Express. 2011 Dec 5;19(25):25792-8. doi: 10.1364/OE.19.025792.
Microspheres of Nd3+ doped barium titano silicate glass were prepared and the whispering gallery mode resonances were observed in a modified confocal microscope. A bulk sample of the same glass was calibrated as temperature sensor by the fluorescence intensity ratio technique. After that, the microsphere was heated by laser irradiation process technique in the microscope and the surface temperature was estimated using the fluorescence intensity ratio. This temperature is correlated with the displacement of the whispering gallery mode peaks, showing an average red-shift of 10 pm/K in a wide range of surface temperatures varying from 300 K to 950K. The limit of resolution in temperature was estimated for the fluorescence intensity ratio and the whispering gallery mode displacement, showing an improvement of an order of magnitude for the second method.
制备了掺Nd3+的钛酸钡硅酸盐玻璃微球,并在改进的共聚焦显微镜中观察到回音壁模式共振。通过荧光强度比技术将相同玻璃的块状样品校准为温度传感器。之后,在显微镜中通过激光辐照工艺技术加热微球,并使用荧光强度比估计表面温度。该温度与回音壁模式峰的位移相关,在300K至950K的宽表面温度范围内显示出平均10 pm/K的红移。针对荧光强度比和回音壁模式位移估计了温度分辨率极限,结果表明第二种方法的分辨率提高了一个数量级。