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Multi-dimensional time-correlated single photon counting

机译:多维时间相关的单光子计数

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Time-correlated single photon counting (TCSPC) is based on the detection of single photons of a periodic light signal, measurement of the detection time of the photons, and the build-up of the photon distribution versus the time in the signal period. TCSPC achieves a near ideal counting efficiency and transit-time-spread-limited time resolution for a given detector. The drawback of traditional TCSPC is the low count rate, long acquisition time, and the fact that the technique is one-dimensional, i.e. limited to the recording of the pulse shape of light signals. We present an advanced TCSPC technique featuring multi-dimensional photon acquisition and a count rate close to the capability of currently available detectors. The technique is able to acquire photon distributions versus wavelength, spatial coordinates, and the time on the ps scale, and to record fast changes in the fluorescence lifetime and fluorescence intensity of a sample. Biomedical applications of advanced TCSPC techniques are time-domain optical tomography, recording of transient phenomena in biological systems, spectrally resolved fluorescence lifetime imaging, FRET experiments in living cells, and the investigation of dye-protein complexes by fluorescence correlation spectroscopy. We demonstrate the potential of the technique for selected applications.
机译:时间相关的单光子计数(TCSPC)基于检测周期光信号的单个光子,测量光子的检测时间,以及光子分布的积聚与信号时段中的时间。 TCSPC实现了对给定检测器的接近理想计数效率和传输时间传播限量分辨率。传统TCSPC的缺点是低计数率,长采集时间,以及技术是一维的事实,即限于光信号的脉冲形状的记录。我们提出了一种高级TCSPC技术,具有多维光子采集和靠近当前可用探测器的能力的计数率。该技术能够获取光子分布与波长,空间坐标,以及PS刻度上的时间,并记录样品的荧光寿命和荧光强度的快速变化。先进的TCSPC技术的生物医学应用是时域光学断层扫描,在生物系统中记录瞬态现象,光谱解析荧光寿命成像,活细胞中的褶皱实验,以及荧光相关光谱研究染料 - 蛋白复合物的研究。我们展示了所选应用技术的潜力。

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