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Analytical computation of magnetic field in coil-dominated superconducting quadrupole magnets based on racetrack coils
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作者 chuang shen Ying-Shun Zhu Fu-San Chen 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第4期119-135,共17页
Currently,three types of superconducting quadrupole magnets are used in particle accelerators:cos 2θ,CCT,and serpentine.However,all three coil configurations have complex spatial geometries,which make magnet manufact... Currently,three types of superconducting quadrupole magnets are used in particle accelerators:cos 2θ,CCT,and serpentine.However,all three coil configurations have complex spatial geometries,which make magnet manufacturing and strain-sensitive superconductor applications difficult.Compared with the three existing quadrupole coils,the racetrack quadrupole coil has a simple shape and manufacturing process,but there have been few theoretical studies.In this paper,the two-dimensional and three-dimensional analytical expressions for the magnetic field in coil-dominated racetrack superconducting quadrupole magnets are presented.The analytical expressions of the field harmonics and gradient are fully resolved and depend only on the geometric parameters of the coil and current density.Then,a genetic algorithm is applied to obtain a solution for the coil geometry parameters with field harmonics on the order of 10^(-4).Finally,considering the practical engineering needs of the accelerator interaction region,electromagnetic design examples of racetrack quadrupole magnets with high gradients,large apertures,and small apertures are described,and the application prospects of racetrack quadrupole coils are analyzed. 展开更多
关键词 Superconducting quadrupole magnet Racetrack coil Multipole field Genetic algorithm Magnetic design
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剥离的FePS3纳米片及其活体内T1加权磁共振成像介导的近红外光热治疗研究 被引量:1
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作者 张颖 都洪芳 +11 位作者 何盼盼 沈闯 李琦 段叶凡 邵周伟 牟菲 黄峰 李霈旸 高平齐 于鹏 罗志敏 汪联辉 《Science China Materials》 SCIE EI CAS CSCD 2021年第10期2613-2623,共11页
开发具有先进生物成像和高性能诊疗功能的纳米平台对于纳米科学与生物医药研究有重要意义.本文中,我们通过在氩气中超声剥离FePS3单晶并同步化学修饰氨基聚乙二醇制备了氨基聚乙二醇功能化的FePS3纳米片(FePS3-PEG),FePS3-PEG纳米片在80... 开发具有先进生物成像和高性能诊疗功能的纳米平台对于纳米科学与生物医药研究有重要意义.本文中,我们通过在氩气中超声剥离FePS3单晶并同步化学修饰氨基聚乙二醇制备了氨基聚乙二醇功能化的FePS3纳米片(FePS3-PEG),FePS3-PEG纳米片在808 nm激光下的光热转化效率可达22.1%,并在外界磁场中显示了明显的T1弛豫效应(r1=2.69(mmol L^(-1))^(-1)S^(-1)).体内外的生物实验结果表明,FePS3-PEG纳米片具有良好的生物相容性,在清晰的T1加权磁成像介导下展现出优异的光热治疗效果.FePS3-PEG纳米片的特性使其成为有前景的癌症T1加权磁成像介导的近红外光热治疗纳米药物. 展开更多
关键词 photothermal therapy near infrared T1 magnetic resonance imaging thin-layered Fe PS3nanosheets bifunctional nanomedicine
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