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Sub-diffraction positioning of a two-photon excited and optically trapped quantum dot

机译:Sub-diffraction双光子的定位兴奋,光量子点

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Colloidal quantum dots are luminescent long-lived probes that can be two-photon excited and manipulated by a single laser beam. Therefore, quantum dots can be used for simultaneous single molecule visualization and force manipulation using an infra-red laser. Here, we show that even a single optically trapped quantum dot, performing restricted Brownian motion within the focal volume, can be two-photon excited by the trapping laser beam and its luminescence can be detected by a camera. After two-photon excitation for a time long enough, the emitted light from the quantum dot is shown to blueshift. A quantum dot is much smaller than a diffraction limited laser focus and by mapping out the intensity of the focal volume and overlaying this with the positions visited by a quantum dot, a quantum dot is shown often to explore regions of the focal volume where the intensity is too low to render two-photon absorption likely. This is in accordance with the observation that a trapped quantum dot is only fluorescing 5-10 percent of the time. The results are important for realizing nano-scale quantum dot control and visualization and for correct interpretation of experiments using two-photon excited quantum dots as markers.
机译:胶体量子点发光长寿探针,可以和双光子兴奋被一个激光束。量子点可以用于同时单身分子可视化和操纵力使用一个红外激光。一个光量子点被困,执行限制内的布朗运动震源体积,可以双光子激发的捕获激光和发光检测到一个相机。在一段时间内的时间足够长,发射的光量子点是蓝移。点远小于衍射极限激光焦点和映射的强度这个与震源体积和覆盖位置了量子点、量子点显示经常探讨的焦点区域吗体积强度太低呈现双光子吸收的可能性。根据观察被困量子点是只有荧光5 - 10的百分比时间。纳米量子点控制和可视化和正确的解释实验利用双光子激发量子点标记。

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