在此基础上,进一步讨论了金属样品的近场成像特点和其特有的局域光学共振现象。
On the basis of this approach, the characteristic of the near-field imaging and the localized optical resonance of the metallic sample were discussed.
本文给出了有关双光子共振介质中光学双稳的一般理论。
In this paper, the optical bistability in two-photon resonance media is discussed theoretically.
从严格数值结果与近似公式的对比发现,对共振滤波器的旁带反射率,可以用普通薄膜光学的反射率公式进行非常直观方便的讨论。
Comparing rigorous numerical result with approximate formulae, we find that the reflectance formula of general thin optics can easy straight calculate the side bands reflectance of resonance filter.
采用飞秒激光,运用简并四波混频法,研究了化合物在非共振状态下的三阶非线性光学性能。
By using femtosecond laser, the off-resonant third-order optical nonlinearity of the compound was measured with degenerate four-wave mixing technique.
双光子共振增强了碱金属原子的非线性极化率,可以观测到多种非线性光学过程产生的非线性光谱。
The nonlinear spectroscopy created by many kind of optical processes are observed while two-photon resonance enhanced the atomic nonlinear susceptibility.
探讨如何用电子回旋共振化学气相沉积(ECRCVD)设备制备非晶态氮化硅介质膜和光学膜。
This article is about how to use Electron Cyclotron Resonance Chemical Vapor Deposition (ECRCVD) method to prepare amorphous silicon nitride (SiN_x) film.
电子共振增强有利于提高三阶非线性光学系数。
It was confirmed that the resonant of electron could enhance the third-order nonlinear optical coefficient greatly.
本文系统地研究了双光子共振作用的光学多稳态理论。
The theory of the optical multistability by two-photon resonant interaction is investigated.
荧光共振能量转移(FRET)技术作为一种高效的光学“分子尺”,在生物大分子相互作用、免疫分析、核酸检测等方面有广泛的应用。
Fluorescence resonance energy transfer (FRET) has broad applications in the study of the interactions of biological macromolecules, immunoassay, nucleic acid detection and so on.
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。
We introduce optical nonlinear medium to multi-layers structure and discuss the influence of optical non-linearity on surface plasmon resonance.
特别是波导型光栅结构的导模共振现象被提出及广泛关注以后,这类光学元件就越发受到各国研究人员的青睐。
Especially, after guided-mode resonance in waveguide grating was presented and studied more detailed, this kind of optical elements has attracted a large of researchers.
利用电子回旋共振(ECR)微波等离子体辅助化学气相沉积技术、工作气氛为丙酮,在光学玻璃衬底上得到了光滑、致密、均匀的类金刚石薄膜。
Smoothing, dense and uniform nano crystalline diamond like carbon films are prepared by using electron cyclotron resonance (ECR) microwave acetone plasma chemical vapor deposition (CVD) method.
玻璃中的金属纳米粒子由于其表面等离子共振,在特征峰附近会出现明显的光学非线性现象。
The optical nonlinear phenomena could be observed obviously around the absorption peak, due to the surface plasmon resonance.
运用绝热近似理论,研究了由加性噪声和乘性噪声及周期信号驱动的光学双稳系统的随机共振现象。
The stochastic resonance(SR)in an optical bistable system under the simultaneous action of multiplicative and additive noises and periodic signal is studied using the adiabatic approximation theory.
基于有差伺服调节技术,实现了外置光学谐振腔的共振频率与钛宝石激光器工作频率的锁定。
With the peak-seeking servo-controlled technology based on a residual error, an external optical cavity can keep in resonance with the frequency of Ti-sapphire laser in the experiment.
随着分子影像学的提出,能通过活体检测移植后的细胞,方法主要有磁共振成像、核医学成像、光学成像。
With the proposing of the molecular imaging, the transplanted cells can be tracked in vivo by MR imaging, nuclear imaging and optical imaging.
使光学速调管第二段波动器的磁场参数与光场的高次谐波共振,与对称光学速调管情况相比,可使产生的相干谐波辐射强度提高。
Making the second section undulator of optical klystron resonant with the higher harmonic of the laser, the harmonic emission can be enhanced.
分析了在双光子离共振和双光子近共振情形下的光学双稳特性,以及在双光子近共振情形时的瞬态光学双稳特性。
The steady-state behavior in both the cases of two-photon far- and near-resonance, and the transient behavior in the case of two-photon near-resonance are analysed.
同时进一步从光学和电磁学的角度分析了影响表面等离子体波共振现象的诸多因素。
At the same time, some factors which influence on SPR phenomenon are analyzed based on optics and electromagnetic.
聚酰亚胺的结构经红外光谱和核磁共振氢谱确认,并对它的溶解性能、特征粘数、光学性能和热性能等进行了表征。
The structure, solubility, intrinsic viscosity, optical and heat property of polyimides was determined by FTIR, NMR, DSC and TGA et al.
主要利用扫描近场光学显微镜(SNOM)技术和表面等离体子共振现象技术相结合,来研究金膜表面等离体子共振。
The SPR on gold film is studied with combination of scanning near-field optical microscope (SNOM) and SPR technique.
核磁共振分光学是最强有力的分析的方法之一。
Nuclear magnetic resonance spectroscopy is one of the most powerful analytical methods.
核磁共振分光学是最强有力的分析的方法之一。
Nuclear magnetic resonance spectroscopy is one of the most powerful analytical methods.
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