首页> 外文会议>Fluorescence Science and Technology >Simultaneous recording of the spectral, temporal and polarization properties of emission spectra
【24h】

Simultaneous recording of the spectral, temporal and polarization properties of emission spectra

机译:发射光谱的光谱,时间和偏振特性的同时记录

获取原文

摘要

We describe a system that records simultaneously the temporal profile of both linear polarization components of all wavelengths in an emission spectrum. Our excitation source is the vacuum ultraviolet storage ring of the National Synchrotron Light Source at Brookhaven National Laboratory, which provides a continuous spectrum of ultraviolet, visible and near-infrared light consisting of ≈1 ns FWHM pulses at a repetition rate of ≈50 MHz, and with identical temporal profiles at all wavelengths, although any source with similar temporal properties could be used. A single excitation band is selected by a monochromator and linearly polarized before reaching the sample. Fluorescence can be monitored either along an axis perpendicular to the excitation beam, or at near normal incidence. A polarizer divides the fluorescence into components with polarizations parallel and perpendicular to the polarization of the incident beam. The emission spectrum is dispersed by an imaging spectrograph, and detected with a resistive-anode imaging photomultiplier operated in a single photon counting mode. The time of arrival of a photon is derived from signals originating in the micro-channel plates that function as the "dynodes" of the photomultiplier, while the location of the centroid of the electron cascade on the anode of the detector indicates both the wavelength and polarization of the detected photon. Simultaneous acquisition of the time-resolved emission spectra for both polarization components is more efficient than conventional approaches and reduces the complications in data analysis that can arise when the properties of a sample change during the time when sequential data-sets are collected.
机译:我们描述了一种系统,该系统同时记录发射光谱中所有波长的线性偏振分量的时间轮廓。我们的激发源是Brookhaven国家实验室国家同步紫外线储物环,它提供了一种连续的紫外线,可见光和近红外光,包括≈50MHz的重复率,包括≈5MHz,并且在所有波长处具有相同的时间谱,但是可以使用任何具有相似时间特性的任何源。单色器选择单色器并在到达样品之前线性偏振的单色刺激带。荧光可以沿垂直于激发束的轴线监测,或在接近正常入射时监测。偏振器将荧光分成与入射光束的偏振平行和垂直于入射光束的偏振的组分中。发射光谱由成像光谱仪分散,并用以单个光子计数模式操作的电阻阳极成像光电倍增器检测。光子到达的时间从源自在微通道板中的信号中推导出用作光电倍增器的“dynode”的信号,而电子级联的质心的位置在检测器的阳极上表示波长和检测到的光子的偏振。同时获取两种偏振分量的时间分辨发射光谱比传统方法更有效,并且减少了数据分析中的并发症,当收集顺序数据集时的样本变化的性质时,可以出现的数据分析。

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