1000 resultados para Estels binaris de raigs X


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The valence band offset (VBO) of MgO/TiO2 (rutile) heterojunction has been directly measured by Xray photoelectron spectroscopy. The VBO of the heterojunction is determined to be 1.6 +/- 0.3 eV and the conduction band offset (CBO) is deduced to be 3.2 +/- 0.3 eV, indicating that the heterojunction exhibits a type-I band alignment. These large values are sufficient for MgO to act as tunneling barriers in TiO2 based devices. The accurate determination of the valence and conduction band offsets is important for use of MgO as a buffer layer in TiO2 based field-effect transistors and dye-sensitized solar cells.

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X-ray photoelectron spectroscopy has been used to measure the valence band offset (VBO) of the w-InN/h-BN heterojunction. We find that it is a type-II heterojunction with the VBO being -0.30 +/- A 0.09 eV and the corresponding conduction band offset (CBO) being 4.99 +/- A 0.09 eV. The accurate determination of VBO and CBO is important for designing the w-InN/h-BN-based electronic devices.

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针对用软件进行病态和可疑目标识别具有造价低、可维护性好等优点 ,提出了一种简单实用的图像子图像的提取、分割、去噪与增强的改进算法 ,设计和实现了一个实用的基于X射线摄影的智能图像处理系统。实验表明 ,该系统性能稳定 ,算法优越 ,可以大幅度提高图像质量 ,增强图像的视觉效果 ,提供更准确、分辨率更高、更满意的图像。在图像预处理等方面优于国内外同类系统。该系统的推广使用 ,将对无损检测产生深远的影响

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Linux系统对少数民族文字的支持需要建立在国际化机制基础上,本文在总结现有Linux国际化框架层次结构基础上,分析了X核心系统国际化的一些关键问题,并以增加藏文支持的实践为例,系统说明了增加民族文字支持所需对X核心系统进行的改动,对在相关项目中的实施情况和效果进行了评估,最后结合其他民族文字系统的研究,对这些工作的局限性进行了深入分析,并提出了今后的工作方向.

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The characteristics of K alpha X-ray sources generated by p-polarized femtosecond laser-solid interactions are experimentally studied in the relativistic regime. By use of knife-edge image technique and a single-photon-counting X-ray CCD camera, we obtaine the source size, the spectrum and the conversion efficiency of the Ka X-ray sources. The experimental results show that the conversion efficiency of Ka photons reaches an optimum value of 7.08 x 10(-6)/sr at the laser intensity of 1.6 x 10(18) W/cm(2), which is different from the Reich's simulation results (Reich et al., 2000 Phys. Rev. Lett. 84 4846). We find that about 10% of laser energy is converted into the forward hot electrons at the laser intensity of 1.6 x 10(18) W/cm(2).

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