• 利用微波ecr等离子增强磁控溅射沉积技术玻璃表面制备了

    The silicon thin films on glass substrate were prepared using microwave ECR plasma source enhanced magnetron sputtering.

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  • 采用甚高频等离子增强化学气相沉积技术制备了不同衬底温度微晶薄膜

    A series of microcrystalline silicon thin films were fabricated by very high frequency plasma-enhanced chemical vapor deposition at different substrate temperatures (T_s).

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  • 采用甚高频等离子增强化学相沉积技术制备不同衬底温度的微晶薄膜

    Microcrystalline silicon thin films prepared at different deposition parameters using very high frequency plasma enhanced chemical vapor deposition (VHF-PECVD).

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  • 采用射频等离子增强化学气相沉积法(RF - PECVD)在衬底上沉积氮化薄膜

    Silicon nitride thin films were prepared onto steel substrates by radio-frequency plasma enhanced chemical vapor deposition (RF-PECVD) technique.

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  • 等离子增强电化学表面陶瓷化(微弧氧化)一项有色金属表面原位生长陶瓷技术

    Plasma enhance electro-chemic al surface ceramic-coating (Microarc oxidation) is a new technique, which can in-situ form the ceramic coatings on the surfaces of some non-ferrous metals.

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  • 概述了等离子增强电化学表面陶瓷化技术原理工艺特点、陶瓷层性能展望了应用前景

    In this paper, the principle, technological characteristics, property and its application of PECC technology were described.

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  • 采用甚高频等离子增强化学气相沉积技术成功地制备了不同硅烷浓度辉光功率条件下的微电池。

    Microcrystalline silicon solar cells with the variation of silane concentration (SC) and discharge power were fabricated by very high frequency plasma-enhanced chemical vapor deposition.

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  • 利用电子束光刻等离子增强化学气相沉积感应耦合等离子刻蚀来实现跑道型微环谐振器的制备;

    The optical part can be done by applying Electron Beam Lithography (EBL), Inductively Coupled Plasma (ICP) etching, and Plasma-enhanced Chemical Vapor Deposition (PECVD).

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  • 研究结果表明射频等离子增强化学气相沉积法,可以PET上沉积厚度纳米至微米级的非晶碳氢

    The results show: the amorphous hydrogenated carbon film can be fabricated on PET surface by plasma-enhanced chemical vapor deposition.

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  • 传统等离子增强化学相沉积(PECVD)技术工艺成熟制备的薄膜质量,较适合大规模工业化生产

    For the high technical maturity and the high deposition quality, traditional plasma enhanced chemical vapour deposition (PECVD) technology was wide applied in the large-scale industrial production.

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  • 利用等离子增强化学气相沉积PECVD)工艺,不同射频功率,不同反应气压条件下制备了化硅薄膜。

    SiN thin films are deposited by plasma enhanced chemical vapor deposition (PECVD) under various power and pressure conditions.

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  • 报道了一种改进型微波等离子增强辉光放电(MPEGD)光源,并将这种级联光源用于固体导电样品分析

    A novel microwave plasma-enhanced glow discharge (MPEGD) lamp was used as excitation source for the analysis of solid samples.

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  • 氧化二氮作为反应气体,采用等离子增强化学气相沉积(PECVD)技术,使用掺杂单晶硅衬底上制备了用于平面光波导二氧化硅薄膜

    Without doping, plasma enhanced chemical vapor deposition (PECVD) of silica films on si substrates with gas mixtures of SiH_4 and N_2O is considered.

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  • 解释谱线强度增强机理,测量了等离子激发温度

    The excitation temperature of laser plasma was measured to explain the mechanism that the line intensities increase.

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  • 这些纳米粒子呈现等离子体激元震荡导致玻璃非线性光学性质增强因此离子注入的玻璃可以应用于全光学开关器件

    These nanoparticles exhibit plasmon resonance, which enhance the nonlinear optical properties of the glass, so that the implanted glass may be used for all_optical switching devices.

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  • 采用四极质谱仪测量了试验参数高压脉冲增强射频磁控溅射ptfe等离子气氛影响规律。

    Quadrupole mass spectrometer was used to analyze the plasma environment of RF magnetron sputtering PTFE target with pulsed bias.

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  • 并且尘埃等离子体层电磁波衰减尘埃粒子浓度以及尘埃粒子半径增大而明显增强

    The attenuation of the electromagnetic wave from the layers of the dust plasma increases with the increase of density and size of the dust grain.

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  • 本文基于产业化应用改善金刚石基体结合力目的,大型工业等离子体—离子束增强沉积系统中,获得了DLC膜和梯度复合dlc膜。

    DLC films and gradient composition DLC films were deposited on si substrates in plasma-ion beam enhanced deposition system for the industrial applications and improving the adhesion.

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  • 增强主要由于金属粒子基底表面电磁耦合,即银粒子定域表面等离子体共振与银基底的表面等离子激元间的相互作用。

    The enhancement is related to the electromagnetic coupling of the localized surface plasmon resonance of silver metal particles and the surface polariton of the silver substrate.

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  • 最近一系列的实验研究表明,大功率微波器件中填充等离子体可以大大增强其电子束与波的互作用效率,提高功率输出的水平;

    Recently, much attention has been made on the study of plasma-filled high-power microwave devices for the enhancement of efficiency and output power.

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  • 介绍了低温等离子技术及其特点,论述了低温等离子体技术改善塑料薄膜印刷适性、提高接性增强PET阻隔性等塑料包装中的应用

    The application of the low temperature plasma technology in improving the printability, increasing the adhesion of plastic film, and enhancing the barrier properties of the PET bottles were discussed.

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  • 采用扫描电镜从微观上分析纤维等离子体处理增强界面结合机理

    The mechanism of interface combination reinforcement with fiber-plasma treatment was developed by SEM.

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  • 设计了种基于表面等离子体局域增强的高灵敏性全调制方案理论分析的结果对于设计新型全光器件具有一定的借鉴意义。

    A new sensitive all-optical modulator project on surface plasmon polariton is numerical designed. The theoretically analyses possess the instructive meaning for designing new type all-optical devices.

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  • 数值结果表明等离子隐身理论上有效可行合理的设置等离子参数可以极大增强等离子体隐身效果

    Numerical results indicate that plasma stealth is effective in theory and reasonable selection with the plasma parameters can greatly enhance the effectiveness of plasma stealth.

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  • 入射增强经由表面等离子体激元极化子共振实现

    An enhancement of the incident optical field is achieved via surface plasmon polariton resonances.

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  • 此外合适的激发更好地匹配金属衬底表面等离子体共振吸收,对表面增强荧光效应更加有利。

    It is also found that proper excitation wavelength, which corresponds to greater SPR absorption of metal substrate, is another factor that can significantly influence the SEF effect.

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  • 此外合适的激发更好地匹配金属衬底表面等离子体共振吸收,对表面增强荧光效应更加有利。

    It is also found that proper excitation wavelength, which corresponds to greater SPR absorption of metal substrate, is another factor that can significantly influence the SEF effect.

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