共查询到18条相似文献,搜索用时 109 毫秒
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内爆压缩过程中多层球壳靶丸变化规律的研究是惯性约束聚变的核心内容. 利用相衬成像技术可以提高低Z材料分界面成像衬度的特点在神光Ⅱ大型激光装置上开展了相关研究. 实验通过激光打Ti靶和针孔点背光的方式产生4.75 keV的X射线微点源, 针对内爆压缩过程中的靶丸样品投影成像获得了清晰的多层球壳靶丸图像, 空间分辨率优于10 μm.同时利用一维流体力学数值模拟程序分析了球壳运动的过程, 实验结果与数值模拟结果符合较好.表明了X射线相衬成像技术在高能量密度物理环境下仍然能够提高低Z材料分界面的衬度,获得高质量的物理图像,能够广泛应用于可控聚变能源、 天体物理等前沿科学领域. 相似文献
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随着惯性约束核聚变(ICF)研究的逐步深入,尤其是氘氚(DT)燃料层球壳梯度掺杂的广泛应用,对轻物质界面的诊断需求日益增长.在北京同步辐射形貌成像站的微米CT机上利用类同轴相衬成像方法获取了三层球壳靶丸的相衬图像,最佳空间分辨率达到了2μupm,衬度达到12%;通过分析边缘增强函数和衬度传递函数之间的关系,总结出一套完整的类同轴相衬成像方法,同时将相衬成像结果与吸收成像结果对比.实验结果表明,X射线相衬成像在轻物质界面的分辨中具有明显的优势,能够广泛应用于ICF研究、医学断层扫描CT装置和生物结构等前沿科学领域. 相似文献
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为对微聚焦X射线相衬成像技术应用于双层以及多层塑料靶丸成像和特征分析进行可行性研究,基于类同轴X射线成像技术,综合考虑成像放大倍数、分辨率和衬度等因素,选择合适的实验参数,成功获得了较为清晰的双层塑料靶丸X射线相衬成像照片;采用数字图像处理技术的图像分割手段,如拉普拉斯高斯边缘检测法等对所成像中靶丸边界特征进行分析处理,获得了双层靶丸内层厚度为(10.5±0.6) μm,外层厚度为(9.2±0.7) μm,靶丸外径为(273.3±1.0) μm等参数。 相似文献
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针对常规内爆背光照相中存在的光源均匀性差、 靶丸图像烧蚀层与气体层界面不清晰、 瞄准精度差等关键问题设计了新型的背光照相靶. 在神光II大型激光装置上采用阵列点光源结合相衬成像的方式获取了清晰的靶丸烧蚀层与气体层界面信息, 同时具备光源均匀性好, 成像视场大的优点; 采用诊断狭缝限光的方式大大提高了瞄准精度使得整体图像质量优于常规靶设计. 实验结果表明, 激光驱动等离子体产生的点光源结合相衬成像方法在精密物理诊断中具有重要的作用, 可以广泛应用于惯性约束聚变以及高能量密度物理研究.
关键词:
惯性约束聚变
背光照相
针孔点背光
相衬成像 相似文献
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发展了背光阴影成像技术,用于诊断透明ICF冷冻靶冰层内表面质量。分析了单层球壳阴影图像中形成亮环的物理机制。用光学追迹软件Tracepro模拟产生了透明单层球壳的阴影图像,用于研究亮环位置与球壳厚度及折射率的关系。建立了背光阴影成像实验装置,获得了透明单层球壳具有明显亮环的实验阴影图像。编制了阴影图像处理软件,获得了靶丸内表面1维功率谱曲线,并据此计算出靶丸内表面均方根粗糙度。理论分析、软件模拟及实验研究均表明,背光阴影成像技术是透明冷冻靶冰层内表面质量的有效诊断方法。 相似文献
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X射线光栅微分相衬成像对由轻元素构成的物质的内部探测具有传统吸收成像无法比拟的优势, 尤其在癌症的早期诊断和轻元素材料及器件的无损检测等领域应用潜力巨大. 大视场成像是影响该技术从实验室走向实际应用的重要因素. 针对大视场成像的客观需求, 基于菲涅耳衍射原理和光栅结构特征, 建立了量化物理模型用于分析影响成像视场的因素, 提出了实现大成像视场的有效途径, 为未来大视场光栅微分相衬成像方法的设计和应用提供理论依据. 相似文献
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A variable-wavelength-based approach of phase retrieval for contrast transfer function based methods
Kashyap YS Agrawal A Sarkar PS Shukla M Roy T Sinha A 《Journal of synchrotron radiation》2010,17(6):799-803
X-ray phase-contrast imaging has emerged as an important method for improving contrast and sensitivity in the field of X-ray imaging. This increase in the sensitivity is attributed to the fact that, in the hard X-ray regime, the phase shift is more prominent as compared with the attenuation for materials having a low X-ray absorption coefficient. Among all the methods using the X-ray phase-contrast technique, in-line phase-contrast imaging scores over the other methods in terms of ease of implementation and efficient use of available X-ray flux. In order to retrieve the projected phase map of the object from the recorded intensity pattern, a large number of algorithms have been proposed. These algorithms generally use either the transport of intensity or contrast transfer function based approach for phase retrieval. In this paper it is proposed to use multiple wavelengths for phase retrieval using the contrast transfer function based formalism. 相似文献
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Hua-Jie Han Sheng-Hao Wang Kun Gao Zhi-Li Wang Can Zhang Meng Yang Kai Zhang Pei-Ping Zhu 《中国物理C(英文版)》2016,40(4):048201-048201
Dual-energy X-ray absorptiometry(DEXA) has been widely applied to measure the bone mineral density(BMD) and soft-tissue composition of the human body. However, the use of DEXA is greatly limited for lowZ materials such as soft tissues due to their weak absorption, while X-ray phase-contrast imaging(XPCI) shows significantly improved contrast in comparison with the conventional standard absorption-based X-ray imaging for soft tissues. In this paper, we propose a novel X-ray phase-contrast method to measure the area density of low-Z materials, including a single-energy method and a dual-energy method. The single-energy method is for the area density calculation of one low-Z material, while the dual-energy method aims to calculate the area densities of two low-Z materials simultaneously. Comparing the experimental and simulation results with the theoretical ones, the new method proves to have the potential to replace DEXA in area density measurement. The new method sets the prerequisites for a future precise and low-dose area density calculation method for low-Z materials. 相似文献
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Tatsuro Otaki 《Optical Review》2000,7(2):119-122
A new phase contrast microscopy technique for halo reduction is proposed. This technique is based on an apodization method combined with the Zernike phase contrast method. Although it has been a difficult theoretical problem, the proposed technique achieves halo reduction by considering angles of diffraction and phase differences. The technique utilizes an apodized phase plate consisting of a quarter wave phase shift ring with a 25% transmittance, and a pair of adjacent rings, which have 50% transmittance. This element is placed at the back focal plane of the objective. The result is startling, halo reduced images of phase objects providing enhanced inner details. 相似文献