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From optical to X-ray ghost imaging

机译:从光学到X射线幻影成像

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摘要

Recent advances in ghost imaging techniques and X-ray sources such as synchrotrons and, more recently, X-ray free-electron lasers (XFEL) have made X-ray ghost imaging a growing topic of interest. One specific type of ghost imaging utilizes thermal radiation and the measurement of intensity fluctuation correlation to form a true image without the need of a lens. This technique allows for much higher resolution than traditional X-ray imaging for a mesoscopic or even a microscopic object. In addition to this benefit of not requiring a lens, a surprising experiment has shown that, when set up correctly, this type of ghost imaging can provide clear images through the measurement of intensity fluctuation correlation when traditional images through measurements of intensity are blurred due to optical turbulence and vibrations. This turbulence-free technique will help maintain the high resolution of X-ray ghost imaging. How is an image formed from fluctuations in light? And what makes it turbulence-free? Using the concept of two-photon interference, this article provides an introduction to these fundamentally interesting concepts and X-ray ghost imaging.
机译:幻影成像技术和X射线源(例如同步加速器)以及最近的X射线自由电子激光器(XFEL)的最新进展已使X射线幻影成像成为人们日益关注的话题。一种特定类型的重影成像利用热辐射和强度波动相关性的测量来形成真实图像,而无需镜头。与传统的X射线成像相比,与中观或什至微观物体相比,该技术可提供更高的分辨率。除了不需要镜头的好处之外,一个令人惊讶的实验表明,如果正确设置,当通过强度测量而产生的传统图像由于以下原因而模糊时,这种类型的重影成像可以通过强度波动相关性的测量而提供清晰的图像。光学湍流和振动。这种无湍流的技术将有助于保持X射线幻影成像的高分辨率。光的波动如何形成图像?是什么使其无湍流?本文使用双光子干涉的概念,对这些基本有趣的概念和X射线重影成像进行了介绍。

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