Menzel E R, Popovic Z D
Xerox Research Centre of Canada, Ltd., 2480 Dunwin Dr., Mississauga, Ontario L5L 1J9, Canada.
Rev Sci Instrum. 1978 Jan;49(1):39. doi: 10.1063/1.1135248.
A procedure for measurement of fluorescence lifetimes with picosecond time resolution is described. A cw laser beam is modulated with a standing-wave acousto-optic modulator. The modulated beam is split; one part serves as a reference beam, the other part excites the fluorescent sample. The sample flourescence and the reference beam, attenuated and delayed optically to be equal in amplitude and opposite in phase to the fluorescence, are incident onto a single photomultiplier tube. The thus achieved photodetector ac null is monitored either by an AM radio, whose intermediate-frequency signal is displayed on an oscilloscope, or by a spectrum analyzer. With 30-MHz light modulation and the radio, lifetimes could be determined with resolution better than 15 ps. With the spectrum anlyzer and 170-MHz light modulation frequency we have achieved 4-ps lifetime resolution. Correction for photomultiplier transit time versus incident wavelength is made.
本文描述了一种具有皮秒时间分辨率的荧光寿命测量方法。连续波激光束由驻波声光调制器进行调制。调制后的光束被分光,一部分用作参考光束,另一部分用于激发荧光样品。样品荧光和经过光学衰减及延迟、使其幅度与荧光相等且相位相反的参考光束,入射到单个光电倍增管上。通过一台调幅收音机监测由此实现的光探测器交流零信号,收音机的中频信号在示波器上显示,或者通过频谱分析仪进行监测。采用30兆赫的光调制和收音机时,寿命测量分辨率可优于15皮秒。使用频谱分析仪和170兆赫的光调制频率时,我们实现了4皮秒的寿命分辨率。对光电倍增管渡越时间随入射波长的变化进行了校正。