plasma resonance中文是什么意思
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用"plasma resonance"造句"plasma resonance"怎么读"plasma resonance" in a sentence
中文翻译手机版
- 等离子体共振
- "plasma"中文翻译 n. 1.【生理】血浆;淋巴液。 2.【生物学】原生质。 ...
- "resonance"中文翻译 n. 1.回声,反响;【物理学】共鸣,共振;【无线电】( ...
- "in resonance" 中文翻译 : 自旋共振
- "resonance" 中文翻译 : n. 1.回声,反响;【物理学】共鸣,共振;【无线电】(波长的)调谐。 2.【化学】中介(现象)。 3.【医学】叩响。 4. 【天文学】(同一天体的两种运动间或两个天体运动间的)同步。 atomic resonance 原子共振。 fission resonance 裂变反应共振。
- "plasma" 中文翻译 : n. 1.【生理】血浆;淋巴液。 2.【生物学】原生质。 3.(做药膏用的)膏浆。 4.【矿物】半透明的绿玉髓。 5.【物理学】等离子(体);等离子区。 -matic, -mic adj.
- "plasma display plasma display" 中文翻译 : 等离子显示器
- "absent resonance" 中文翻译 : 无叩响,无共鸣
- "absorption resonance" 中文翻译 : 吸收共振
- "acceptor resonance" 中文翻译 : 电压谐振; 接受器谐振
- "accidental resonance" 中文翻译 : 偶然共振
- "acoustic resonance" 中文翻译 : 共鸣;和鸣; 声共鸣; 声共振
- "acoustical resonance" 中文翻译 : 声共鸣
- "adjacent resonance" 中文翻译 : 邻频道共振; 相邻信道共振
- "amphoric resonance" 中文翻译 : 空瓮音
- "amplitude at resonance" 中文翻译 : 谐振幅值
- "amplitude resonance" 中文翻译 : 波幅共振; 幅度共振; 振幅共振; 振幅谐振
- "anharmonic resonance" 中文翻译 : 非谐共振
- "antenna resonance" 中文翻译 : 天线谐振
- "anti resonance" 中文翻译 : 并联谐振; 反共振; 防共振
- "antiferromagnetc resonance" 中文翻译 : 反铁磁共振
- "antiferromagnetic resonance" 中文翻译 : 反铁磁共振; 反铁磁性共振
- "arm resonance" 中文翻译 : 音臂共振
- "assisted resonance" 中文翻译 : 受援共振
- "asteroidal resonance" 中文翻译 : 小行星共振
- "atomic resonance" 中文翻译 : 原子共振
例句与用法
- Locus of reflectivity in complex coordinates during surface plasma resonance
光激发表面等离子体波反射系数在复平面的轨迹 - Determination of carrier concentration in gallium arsenide by the plasma resonance minimum
砷化镓中载流子浓度等离子共振测量方法 - On the other hand , the microscopic principle of surface plasma resonance is explicated . the device , parameters , factors and the concrete applications of the prism spws are studied
其次讨论了棱镜表面等离子体波传感器的设计、参数、影响其特性的因素以及棱镜表面等离子体波传感器的具体应用。 - We infered that this new absorption band was associated with the effect of charge - transfer transition between adsorbates and colloidal silver particles , not the effect of the surface plasma resonance due to the silver particles aggregation which was usually attributed to in previous research work
我们将其归因于与纳米银颗粒表面间的电荷转移效应( ct ) ,而非通常所认为的因银胶凝聚而产生的表面等离子体共振吸收效应。 - The infrared results showed that the ir characteristic value l080cm - lof cubic crystal sio , and the absorption peak 460cm - l of mgf , caused by the interaction between f - - mg ' + - p elastic vibration and photon radiation , appeared in the ir spectra . ellipsometric analysis showed that the typical absorption peaks 58lnm , 589nm and 606nm , resulting from the surface plasma resonance of cu panicles and reflecting the absorption on composite film system , appeared in the extinction coefficient k curves of cu ( voll5 % ) mgf , , cu ( vol20 % ) mgf , and cu ( vol30 % ) mgf , cermet films , respectively . with the component of cu increasing , the peak site presented red shift , which was in accordance to the results of ultraviolet - visible spectra
椭偏测试分析表明: cu ( vol15 ) mgf _ 2 、 cu ( vol20 ) mgf _ 2和cu ( vol30 ) mgf _ 2样品的消光系数k曲线中出现了反映复合金属陶瓷体系吸收的由cu金属颗粒表面等离子体共振引起的吸收峰,峰位分别为581nm 、 589nm和606nm ,呈现红移,这些与紫外-可见光谱测试结果相一致;此外, cu - mgf _ 2复合纳米金属陶瓷薄膜光学常数的实验值与考虑尺寸效应修正过的mg理论值总体上符合得很好。 - The absorption characteristics was that the surface plasma absorption peak appeared around 570 nm shifted to a short wavelength and strengthened as the cu composition increased . but the maximal shift range of the absorption - edge preponderated over 500 nm , and leaded that the dipolar plasma resonance absorption peak were covered up and gradually disappeared in the absorption spectrum . we theoretically explained the mechanism of the modulating action
实验观察到cu表面等离子体共振吸收峰位在570lun附近的吸收边频移量超过了500nln .理论分析表明,吸收峰位的移动主要源于偶极共振,而峰形的宽化主要由纳米粒子的表面效应和量子尺寸效应引起 - Excited with 228nm , the emission bands centered at about 365nm and 460nm originate from the electron transitions of 1d2 - 1s0 and 3d - 1s0 in ag + respectively , and the emission band at 400nm results from the surface plasma resonance of the silver nanoparticles , which aggregated near the surface of the films
在228nm光激发下,复合膜中ag ~ +的电子的~ 1d _ 2 ~ 1s _ 0跃迁和~ 3d ~ 1s _ 0跃迁分别在365和460nm附近发光,聚集在复合膜表面的纳米银粒子的表面等离激元共振导致了400nm附近的发光。 - The study indicates that self - assembly monolayer membrane of au nanoparticle distributes as sub - monolayer . after au nanoparticles are assembled in multilayer , surface plasma resonance absorption peak got a red shift because of the polarizing effect of the surrounding media and the coupling effect of surface plasma waves between the next au nanoparticles
研究表明au纳米粒子的自组装单层薄膜呈亚单层分布, au纳米粒子组装到多层复合薄膜中后,由于周围介质的极化作用以及相邻au纳米粒子间的表面等离子体波的耦合作用,表面等离子共振吸收峰出现红移和展宽。 - As the position , intensity and width of the plasma resonance absorption peak are concerned , we find that maxwell - garnett and ping sheng theories are applicable for the cermet films with low metal volume fraction , while bruggeman theory fits better than maxwell - garnett theory for au - mgf2 films with high metal volume fraction
就金属颗粒表面等离子共振引起的吸收峰的峰位、强度和峰形而言,对低金属组分的纳米金属陶瓷薄膜光学常数的计算, maxwell - garnett和pingsheng要比bruggeman理论结果好。
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