Romano Francesco Paolo, Caliri Claudia, Cosentino Luigi, Gammino Santo, Giuntini Lorenzo, Mascali David, Neri Lorenzo, Pappalardo Lighea, Rizzo Francesca, Taccetti Francesco
CNR , Istituto per i Beni Archeologici e Monumentali, Via Biblioteca 4, 95124 Catania, Italy.
Anal Chem. 2014 Nov 4;86(21):10892-9. doi: 10.1021/ac503263h. Epub 2014 Oct 17.
This work describes a tabletop (50 cm × 25 cm × 25 cm) full field X-ray pinhole camera (FF-XPC) presenting high energy- and high spatial-resolution. The FF-XPC consists of a conventional charge-coupled device (CCD) detector coupled, in a coaxial geometry, to a pinhole collimator of small diameter. The X-ray fluorescence (XRF) is induced on the samples with an external low-power X-ray tube. The use of the CCD as an energy dispersive X-ray detector was obtained by adopting a multi-image acquisition in single photon counting and by developing a processing algorithm to be applied in real-time to each of the acquired image-frames. This approach allowed the measurement of X-ray spectra with an energy resolution down to 133 eV at the reference value of 5.9 keV. The detection of the X-ray fluorescence through the pinhole-collimator allowed the two-dimensional elemental mapping of the irradiated samples. Two magnifications (M), determined by the relative sample-pinhole-CCD distances, are used in the present setup. A low value of M (equal to 0.35×) allows the macro-FF-XRF of large area samples (up to 4 × 4 cm(2)) with a spatial resolution down to 140 μm; a large magnification (M equal to 6×) is used for the micro-FF-XRF of small area samples (2.5 × 2.5 mm(2)) with a spatial resolution down to 30 μm.
这项工作描述了一种桌面式(50厘米×25厘米×25厘米)全视野X射线针孔相机(FF-XPC),它具有高能量分辨率和高空间分辨率。FF-XPC由一个传统的电荷耦合器件(CCD)探测器组成,该探测器以同轴几何结构与一个小直径针孔准直器相连。用外部低功率X射线管在样品上激发X射线荧光(XRF)。通过在单光子计数中采用多图像采集,并开发一种实时应用于每个采集图像帧的处理算法,实现了将CCD用作能量色散X射线探测器。这种方法能够在5.9 keV的参考值下测量能量分辨率低至133 eV的X射线光谱。通过针孔准直器检测X射线荧光,可以对辐照样品进行二维元素映射。在当前设置中使用了两种由样品-针孔-CCD相对距离确定的放大倍数(M)。较低的M值(等于0.35×)可对大面积样品(最大4×4平方厘米)进行宏观FF-XRF分析,空间分辨率低至140微米;较大的放大倍数(M等于6×)用于对小面积样品(2.5×2.5平方毫米)进行微观FF-XRF分析,空间分辨率低至30微米。