plasmon



n.
(细)胞质基因(组);
英英释义
Plasmon
In physics, a plasmon is a quantum of plasma oscillation. The plasmon is a quasiparticle resulting from the quantization of plasma oscillations just as photons and phonons are quantizations of electromagnetic and mechanical vibrations, respectively (although the photon is an elementary particle, not a quasiparticle).
以上来源于:Wikipedia
权威例句
Surface plasmon subwavelength optics.Surface plasmon enhanced silicon solar cells
Nano-optics of surface plasmon polaritons
Surface Plasmon Spectroscopy of Nanosized Metal Particles
Surface plasmon enhanced silicon solar cells. J Appl Phys 101:093105
A Hybridization Model for the Plasmon Response of Complex Nanostructures
A molecular ruler based on plasmon coupling of single gold and silver nanoparticles.
Surface plasmon amplification by stimulated emission of radiation: quantum generation of coherent surface plasmons in nanosystems
Spectral Properties and Relaxation Dynamics of Surface Plasmon Electronic Oscillations in Gold and Silver Nanodots and Nanorods
Gold and Silver Nanoparticles in Sensing and Imaging: Sensitivity of Plasmon Response to Size, Shape, and Metal Composition
1. Furthermore, imaging surface plasmon resonance for biosensors analysis is established.
进而建立表面等离激元共振生物传感成像。
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2. The plasmon response absorption peak broadens due to the special dendritic nanostructure.
由于树枝状的特殊结构,其等离子体共振吸收峰出现较大的宽化。
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3. A plasmon is an electronic surface wave that rolls through the sea of conduction electrons on a metal.
一个是电子表面等离子体波,在金属辊通过海传导电子。
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4. Recently, research on surface plasmon polaritons attracts a great deal of attention and interest.
近年来,对表面等离子体激元的研究引起了人们广泛的关注和极大的兴趣。
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5. These effects are explained by the surface plasmon polariton Bloch modes and self-focusing theory.
这些效应可以用表面等离子体激发和自聚焦理论来解释。
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6. But once the plasmon has strayed from that path-due in part to entropy-making the loop is no longer possible.
但是,部分上由于熵的关系,一旦等离子体激元走过了那条路径,想完成环将不再可能。
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7. The research and structure principle of the Surface Plasmon Resonance biosensor are introduced in this paper.
本文简要介绍了表面等离子体共振生物传感器的结构原理及研究动向。
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8. The principle of surface plasmon resonance phenomenon and excitation condition of SPR are described in the paper .
对表面等离子体波共振现象产生的原理和激发条件进行了阐述。
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9. The shift in absorption spectra of the silver plasmon band is explained in terms of surface effects and size effects.
研究表明,银的等离子体共振吸收峰的移动是尺寸效应和表面效应共同作用的结果。
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10. A method for determining the surface roughness parameters of metal film with surface plasmon spectroscopy is proposed.
介绍了确定金属膜表面粗糙度的表面等离子激元光谱方法。
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11. The origin of these phenomena have been analyzed in terms of the two plasmon decay theory and dynamic self-focusing model.
使用双等离振子衰变理论,结合动态自聚细丝模型分析了这一现象的起因。
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12. These fine properties are mainly due to the surface plasmon resonance and inner electron transition of silver nanoparticles.
这些优良特性主要来源于复合物中银纳米粒子的表面等离激元共振及其内部的电子跃迁。
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13. A quasi-distributed optical fiber surface plasmon resonance (SPR) sensor based on wavelength division multiplexing is studied.
研究了一种基于波分复用原理的准分布式光纤表面等离子体波传感器。
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14. This article suggests that surface plasmon resonance technology (SPR) should be considered as a very important means of biosensing.
表面等离子体谐振(SPR)技术是一项十分重要的生物传感技术。
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15. In this paper some geometric and kinematic features of a plasmon which is expanding and ejected both relativistically are discussed.
本文讨论以相对论速度抛射的相对论膨胀等离子团的一些几何学和运动学性质。
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16. By travelling horizontally in this way, a plasmon passes through more of the solar cell's silicon than any incident beam from the sun could.
等离子体激元以这种方式水平地运动,比任何来自太阳的入射光线更多地经过太阳能电池的硅。
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17. In this paper, we introduce the basic principles and key technical features of Fourier Transform Surface Plasmon Resonance (FT-SPR) technique.
本文介绍傅立叶变换表面等离子共振技术(FT - SPR)的基本原理和关键技术的特点。
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18. Tunable characteristics of the localized surface plasmon resonance (LSPR) peak of gold nanoshells are investigated numerically with Mie theory.
理论研究了金纳米球壳结构局域表面等离子体共振(LSPR)的调谐特性。
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19. We introduce optical nonlinear medium to multi-layers structure and discuss the influence of optical non-linearity on surface plasmon resonance.
将光学非线性介质引入到多层膜结构中,讨论光学非线性对表面等离子体共振角谱的影响。
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20. In recent years, SPR (surface Plasmon resonance, a surface plasma resonance) sensor has become a leading technology in the sensor research field.
表面等离子体子共振传感器近年来已成为传感器研究的前沿领域。
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21. Sensors and biosensors are also available using antibodies, enzymes, bacteria, receptors, DNA, surface plasmon resonance or infrared spectroscopy.
化学、生物传感器也可用于抗体、酶、细菌、受体、DNA、表面等离子共振体、红外线光谱等检测方法中。
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22. We have experimentally studied the enhancement of channel plasmon polaritons (CPPs) propagating in silver groove surrounded by period corrugations.
模拟结果与实验相符,证明了确实是由于周期性结构导致了沟槽等离激元的增强效应。
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23. Surface Plasmon Resonance (SPR) technology has been becoming a leading one for biomolecular interaction analysis because of its specific advantages.
表面等离子体谐振(SPR)技术由于独特的优点日渐成为生物分子相互作用分析的领导技术。
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24. The principle of surface plasmon resonance(SPR)is briefly introduced and its applications for the studies on electrochemical processes are reviewed.
简述了表面等离子体共振(SPR)的基本原理,并综述了表面等离子体共振技术在电化学反应过程中的应用。
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25. The construction of biosensor chips, immobilization technology and progress in the studies of surface plasmon resonance detection system are reviewed.
综述传感芯片的结构、生物传感芯片的固相化技术及表面等离子共振检测系统的研究进展。
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26. Both the red shift of the plasmon absorption band and the SERS effect result from the interparticle interactions of gold nanoparticles within the films.
吸收峰红移及SERS效应与薄膜中的金纳米粒子间的电磁耦合作用有关。
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27. The colours were produced by a process known as plasmon resonance in a patterned aluminium film made in the university's James Watt Nanofabrication Centre.
这所大学詹姆士·沃持纳米制作中心制作的、有图案的铝胶片上的等离子共振给卡片上了颜色。
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28. Surface plasmon polaritons are a state of evanescent wave, which are localized on the surface of a metal by the interaction of free-electrons and photons.
表面等离子体激元是由金属表面自由电子和光子相互作用而形成的倏逝波。
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29. As a new testing method to refractive index of biological tissues, surface plasmon resonance technology has special merits and an important application in future.
研究表明表面等离子体共振技术作为生物组织折射率测量的一种新的手段,具有独特优势和重要的应用前景。
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30. As a new testing method to refractive index of biological tissues, surface plasmon resonance technology has special merits and an important application in future.
研究表明表面等离子体共振技术作为生物组织折射率测量的一种新的手段,具有独特优势和重要的应用前景。
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plasmon




