Klein Y, Schori A, Dolbnya I P, Sawhney K, Shwartz S
Opt Express. 2019 Feb 4;27(3):3284-3293. doi: 10.1364/OE.27.003284.
We demonstrate computational ghost imaging at X-ray wavelengths with only one single-pixel detector. We show that, by using a known designed mask as a diffuser that induces intensity fluctuations in the probe beam, it is possible to compute the propagation of the electromagnetic field in the absence of the investigated object. We correlate these calculations with the measured data when the object is present in order to reconstruct the images of 50 μm and 80 μm slits. Our results open the possibilities for X-ray high-resolution imaging with partially coherent X-ray sources and can lead to a powerful tool for X-ray three-dimensional imaging.
我们展示了仅使用一个单像素探测器在X射线波长下的计算鬼成像。我们表明,通过使用一个已知设计的掩模作为扩散器来在探测光束中诱导强度波动,在没有被研究物体的情况下计算电磁场的传播是可能的。当物体存在时,我们将这些计算与测量数据相关联,以重建50μm和80μm狭缝的图像。我们的结果为使用部分相干X射线源进行X射线高分辨率成像开辟了可能性,并可能导致一种用于X射线三维成像的强大工具。