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首页> 外文期刊>Bulletin of the American Physical Society >APS -Annual Meeting of the APS Four Corners Section- Event - Quantum Dot Localization with Time Resolved Super-Resolution Tracking Microscopy
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APS -Annual Meeting of the APS Four Corners Section- Event - Quantum Dot Localization with Time Resolved Super-Resolution Tracking Microscopy

机译:APS-APS四角分会年会-活动-具有时间分辨超分辨率跟踪显微镜的量子点定位

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摘要

A novel setup provides simultaneous measurement of the photoluminescence decay time and local position of single emitters with 100 ps time resolution. For the method, a pulsed laser excites a fluorophore positioned in the confocal optical probe region. The subsequent photons are collected with a high numerical aperture microscope objective and imaged onto a 2x2 array of optical fibers in the image plane. Each fiber is connected to one of four single photon counting detectors. To regulate the emitter position, a piezoelectric stage actively adjusts its location with proportional-based feedback from the four detector intensities, so the emitter remains in the center of the probe region. The time-dependent emission observed on the four detectors is used to monitor the spatial position of the emitter with approximately 10 nm precision. This study provides a foundation for later work that will investigate the structural basis of energy transfer among nanoparticles in higher order configurations.
机译:一种新颖的设置可以以100 ps的时间分辨率同时测量光致发光衰减时间和单个发射器的本地位置。对于该方法,脉冲激光激发位于共焦光学探针区域中的荧光团。随后的光子用高数值孔径的显微镜物镜收集,并成像在像平面上的2x2光纤阵列上。每条光纤都连接到四个单光子计数检测器之一。为了调节发射器的位置,压电平台利用来自四个检测器强度的基于比例的反馈来主动调整其位置,因此发射器保持在探头区域的中心。在四个探测器上观察到的随时间变化的发射用于以约10 nm的精度监视发射器的空间位置。这项研究为以后的工作提供了基础,该工作将研究高阶结构中纳米粒子之间能量转移的结构基础。

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