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单自旋量子精密测量——基于钻石量子传感器的微观磁共振
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作者 程春阳 张琪 石发展 《中国科学技术大学学报》 CAS CSCD 北大核心 2019年第11期861-872,共12页
量子精密测量作为基于量子力学原理发展起来的精密测量技术,正成为各学科发展的重要推动力.此处所谓的单自旋量子精密测量一层含义是指以金刚石中的一类点缺陷——氮-空位色心单自旋为量子信息载体,通过光探测磁共振方式对其进行检测;... 量子精密测量作为基于量子力学原理发展起来的精密测量技术,正成为各学科发展的重要推动力.此处所谓的单自旋量子精密测量一层含义是指以金刚石中的一类点缺陷——氮-空位色心单自旋为量子信息载体,通过光探测磁共振方式对其进行检测;另一层面是指通过微波射频的操控将氮-空位色心单自旋制备成量子传感器,实现高灵敏度高空间分辨率的微观磁共振,甚至可以达到对单电子/单核自旋检测的水平.这一技术用量子传感代替电学探测模式,将传统磁共振的检测能力在空间上从毫米推进到纳米尺度,分子数从数十亿推进到单个分子水平.基于氮-空位色心的量子精密测量技术仍处于快速发展阶段,其正在被应用于二维材料磁性研究、超导、单分子结构、单细胞磁检测等方向,有望为物理、化学、生命科学甚至医学等领域的发展提供重要支撑.本文首先介绍单自旋量子精密测量的基本概念和原理,接着着重介绍本课题组近年基于氮-空位色心的量子精密测量相关实验研究,包括单分子顺磁共振、纳米核磁共振、基础物理等方面的相关进展及未来研究展望. 展开更多
关键词 量子精密测量 氮-空位色心 量子传感器 单自旋 微观磁共振
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Nuclear magnetic resonance(NMR) microscopic simulation based on random-walk: Theory and parameters analysis 被引量:1
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作者 谭茂金 徐晶晶 +1 位作者 邹友龙 徐赤诚 《Journal of Central South University》 SCIE EI CAS 2014年第3期1091-1097,共7页
The microscopic response characteristics of nuclear magnetic resonance(NMR) are widely used for characterizing complex pore structures of rocks. Due to the prohibitive NMR experiment cost, numerical simulation was emp... The microscopic response characteristics of nuclear magnetic resonance(NMR) are widely used for characterizing complex pore structures of rocks. Due to the prohibitive NMR experiment cost, numerical simulation was employed as an alternative approach to verify some theoretical aspects of NMR responses. Firstly, the basic principles of pore-scale NMR simulation based on random-walk method(RWM) were introduced. The RWM-simulated results were benchmarked with the analytical results for an ideal spherical pore model. Then, the effects of two numerical parameters, namely diffusion radius and walk numbers, were studied on the simulation accuracy. The simulation method is then applied to various pore models with different pore sizes and pore shapes filled with different fluids to study the microscopic NMR response characteristics. The numerical experiments are useful for understanding and interpreting NMR measurements and the simulation code provides a numerical tool to perform pixel-based digital rock analysis. 展开更多
关键词 microscopic nuclear magnetic resonance random-walk method pore structure parameters analysis
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Studies of Microstructure of Kernels of Macadamia integrifolia and Its Hybrids through MRI, X-Ray Tomography and Confocal Microscopy
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作者 Warangkana Srichamnong Bill Price +4 位作者 Timothy Gardner Ryan Dean Ervan Plougonven Angelique Leonard George Srzednicki 《Journal of Food Science and Engineering》 2013年第9期503-516,共14页
The aim of this study was to apply the existing techniques that enable examination ofmacadamia kernels to provide a better understanding of physico-chemical properties of kernels during postharvest processing. These t... The aim of this study was to apply the existing techniques that enable examination ofmacadamia kernels to provide a better understanding of physico-chemical properties of kernels during postharvest processing. These techniques, such as X-ray tomography, could be applied for quality monitoring in the macadamia industry. The objectives of this study were to investigate the browning centre symptoms that usually occur in macadamia nuts-in-shell. The applied techniques included confocal microscopy, X-ray tomography and magnetic resonance imaging (MRI). Five different varieties of macadamia nuts (A38, 246, 816, 842 and Daddow) were selected to include distinct characteristics, such as drop pattern and growing location. Analysis of the microstructure of kernels by confocal microscopy showed the distribution of possible brown pigment compounds as well as the distribution of lipids, carbohydrates and proteins inside macadamia cells. Physical properties data, including shell density and seed to volume ratio, were obtained by X-ray tomography. Magnetic resonance diffusion tensor imaging used in this study showed marked differences in microstructure which indicate that different varieties exhibit different microstructures expressed as fraction ofanisotropy and apparent diffusion coefficient that appear to be related to the occurrence of the brown centre. Hence, the findings of this study have potential to improve the existing postharvest techniques used in the macadamia processing industry. They will be of benefit to the industry in terms of improved quality control and cost reduction. 展开更多
关键词 Macadamia integrifolia MICROSTRUCTURE magnetic resonance imaging confocal microscopy X-ray tomography
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自旋交叉科学研究
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作者 杜江峰 张琪 +3 位作者 居琛勇 荣星 石发展 陈三友 《中国科学基金》 CSSCI CSCD 北大核心 2021年第2期186-194,共9页
自旋是自然界粒子的基本属性,在现代科技如磁共振影像、磁存储中有着重要应用。近三十年来,随着实验技术的巨大进步,人们对自旋的调控达到了新的高度,现已能在微观尺度上对少量乃至单个自旋进行高精度地控制和测量,为开启全新的自旋应... 自旋是自然界粒子的基本属性,在现代科技如磁共振影像、磁存储中有着重要应用。近三十年来,随着实验技术的巨大进步,人们对自旋的调控达到了新的高度,现已能在微观尺度上对少量乃至单个自旋进行高精度地控制和测量,为开启全新的自旋应用带来了重大机遇。通过发展新颖的具备变革性特征的自旋科学技术,有望促成前沿交叉科学研究中的重大突破,并催生出一批有可能对人类社会带来深远影响的重要科技。自旋交叉科学的研究已在世界范围内得到高度重视,呈现出各国激烈竞争的局面。本文简要介绍了该领域的主要研究进展、关键问题和发展趋势,并对国际竞争中我国如何巩固和扩大在该领域的优势给出了一些政策性建议。 展开更多
关键词 自旋 交叉科学 量子调控 微观磁共振 自旋传感器
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