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Modeling of Laser-Induced Plasmon Effects in GNS-DLC-Based Material for Application in X-ray Source Array Sensors

机译:基于GNS-DLC基材料的激光诱导的等离子体效应模拟应用于X射线源阵列传感器

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摘要

An important direction in the development of X-ray computed tomography sensors in systems with increased scanning speed and spatial resolution is the creation of an array of miniature current sources. In this paper, we describe a new material based on gold nanostars (GNS) embedded in nanoscale diamond-like carbon (DLC) films (thickness of 20 nm) for constructing a pixel current source with photoinduced electron emission. The effect of localized surface plasmon resonance in GNS on optical properties in the wavelength range from UV to near IR, peculiarities of localization of field and thermal sources, generation of high-energy hot electrons, and mechanisms of their transportation in vacuum are investigated. The advantages of the proposed material and the prospects for using X-ray computed tomography in the matrix source are evaluated.
机译:具有增加扫描速度和空间分辨率的系统中X射线计算机断层摄影传感器的重要方向是创建微型电流源的数组。在本文中,我们描述了一种基于纳米级金刚石状碳(DLC)膜(DLC)膜(厚度为20nm)的金纳盘(GNS)的新材料,用于构造具有光漏电的电子发射的像素电流源。研究了局部表面等离子体共振在GNS上对来自UV到附近IR的光学性质的效果,现场和热源的定位的特殊性,高能量热电子产生以及在真空中的运输机制。评估所提出的材料的优点和在矩阵源中使用X射线计算断层扫描的前景。

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