Infrared fluorescence ‘‘decay‐time’’ temperature sensor

作者: K. T. V. Grattan , A. W. Palmer

DOI: 10.1063/1.1138094

关键词:

摘要: The principle of the change in the ‘‘decay time’’ of the fluorescence of a small sample of neodymium in a glass matrix, excited by infrared radiation from a high‐power light emitting diode …

参考文章(6)
Thomas H. Windhorn, Charles A. Cain, Optically Active Binary Liquid Crystal Thermometry IEEE Transactions on Biomedical Engineering. ,vol. BME-26, pp. 148- 152 ,(1979) , 10.1109/TBME.1979.326473
J.S. McCormack, Remote optical measurement of temperature using luminescent materials Electronics Letters. ,vol. 17, pp. 630- 631 ,(1981) , 10.1049/EL:19810442
V I Bilak, I S Goldobin, Georgii M Zverev, I I Kuratev, V A Pashkov, M F Stel'makh, Yu V Tsvetkov, N M Solov'eva, Neodymium YAG lasers pumped by light-emitting diodes Soviet Journal of Quantum Electronics. ,vol. 11, pp. 1471- 1476 ,(1981) , 10.1070/QE1981V011N11ABEH008630
R. R. Sholes, J. G. Small, Fluorescent decay thermometer with biological applications Review of Scientific Instruments. ,vol. 51, pp. 882- 884 ,(1980) , 10.1063/1.1136350
A. J. Rogers, Optical temperature sensor for high voltage applications Applied Optics. ,vol. 21, pp. 882- 885 ,(1982) , 10.1364/AO.21.000882