论文标题

生物学显微镜与未检测的光子

Biological Microscopy with Undetected Photons

论文作者

Buzas, Andras, Wolff, Elmar K., Benedict, Mihaly G., Ormos, Pal, Der, Andras

论文摘要

利用非等级的,相关的光子对的新型成像技术在过去几年的量子光学界及其他地区的科学家中引起了强烈的兴趣。它是这种“幽灵成像”或“量子干扰”方法的关键特性,它们使用相关对的光子进行成像,而成像从未与样品相互作用,从而在光谱范围内与对象的照明不同。设想这些技术在光谱和显微镜中的广泛应用,但是,迄今为止,它们的空间分辨率有限尚未支持对微小生物学对象的现实生活显微镜研究。在这里,我们通过使用播种激光器和共聚焦扫描来报告基于量子干扰的方法的修改,该方法允许通过不超过一个数量级来改进成像分辨率的分辨率,我们还介绍了在生物学样品显微镜中的应用示例。

Novel imaging techniques utilizing nondegenerate, correlated photon pairs sparked intense interest during the last couple of years among scientists of the quantum optics community and beyond. It is a key property of such "ghost imaging" or "quantum interference" methods that they use those photons of the correlated pairs for imaging that never interacted with the sample, allowing detection in a spectral range different from that of the illumination of the object. Extensive applications of these techniques in spectroscopy and microscopy are envisioned, however, their limited spatial resolution to date has not yet supported real-life microscopic investigations of tiny biological objects. Here we report a modification of the method based on quantum interference by using a seeding laser and confocal scanning, that allows the improvement of the resolution of imaging with undetected photons by more than an order of magnitude, and we also present examples of application in the microscopy of biological samples.

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