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激发偶极子和发射偶极子三维取向的同步测量

Simultaneous Measurement of the Three-Dimensional Orientation of Excitation and Emission Dipoles.

作者信息

Karedla Narain, Stein Simon C, Hähnel Dirk, Gregor Ingo, Chizhik Anna, Enderlein Jörg

机构信息

III. Institute of Physics, Georg August University, 37077 Göttingen, Germany.

出版信息

Phys Rev Lett. 2015 Oct 23;115(17):173002. doi: 10.1103/PhysRevLett.115.173002. Epub 2015 Oct 20.

Abstract

The emission properties of most fluorescent emitters, such as dye molecules or solid-state color centers, can be well described by the model of an oscillating electric dipole. However, the orientations of their excitation and emission dipoles are, in most cases, not parallel. Although single molecule excitation and emission dipole orientation measurements have been performed in the past, no experimental method has so far looked at the three-dimensional excitation and emission dipole geometry of individual emitters simultaneously. We present the first experimental study, using defocused imaging in conjunction with radially polarized excitation scanning, to measure both the excitation as well as emission dipole orientations of single molecules, which allows us to sample the distribution of their mutual orientation. We find an unexpectedly broad distribution of the angle between both dipoles which we attribute to the interaction between the observed molecules and the substrate they are immobilized on.

摘要

大多数荧光发射体,如染料分子或固态色心的发射特性,可以用振荡电偶极子模型很好地描述。然而,在大多数情况下,它们的激发偶极子和发射偶极子的取向并不平行。尽管过去已经进行了单分子激发和发射偶极子取向测量,但到目前为止,还没有实验方法能够同时研究单个发射体的三维激发和发射偶极子几何结构。我们展示了第一项实验研究,结合散焦成像和径向偏振激发扫描来测量单分子的激发和发射偶极子取向,这使我们能够采样它们相互取向的分布。我们发现两个偶极子之间的角度分布出乎意料地宽,我们将其归因于观察到的分子与它们固定在其上的底物之间的相互作用。

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