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scattering angle相关的网络例句

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与 scattering angle 相关的网络例句 [注:此内容来源于网络,仅供参考]

Based on the research on the scattering of the Gaussian beam from single sphere, the intensity distributions of LGB beam in different propagation distance is analyzed. Without considering the relationship of scattering and phase shift, the beam coefficients is gained by the solution of scattering cross section, and the LGB is expanded in terms of the vector spherical harmonics as fundamental Gaussian beam. The scattering of the beam with orbital angular momentum from single sphere located on the propagation axis is studied.

在单体球粒子对高斯光束散射研究的基础上,分析了在自由空间不同传输距离LGB光束的光强分布情况,在不考虑散射和波束相移关系的情况下,将LGB作为入射高斯光束,通过对波束入射时的散射衰减截面求解得到波束因子,利用矢量球谐函数对入射高斯波束进行展开,从而研究了单球粒子在在轴条件下对具轨道角动量高斯波束入射的散射问题。

But using infrared CCD, which has little scattering light, strong penetration ability, can improve image quality greatly. This paper analyzes the effects on surveillance by Rayleigh scattering, Mie scattering and unselective scattering theoretically. In addition it discusses the relation between transmission coefficient, reflection coefficient and wavelength of infrared CCD.

而采用散射光小,穿透能力强的红外CCD,则可以显著改善图象质量,从理论上分析了Rayleigh散射,Mie散射,无选择散射对监测的影响,讨论了红外波段CCD的反射系数、透射系数与波长的关系。

Some methods to restrain reverberation are developed. Three scattering models(bottom scattering, surface scattering and volume scattering model) in bistatic sonars are developed and simulated.

重点研究了双基地声纳的各种散射模型(海底散射模型、海面散射模型、体积散射模型),通过对各种影响因素的分析,给出了各种模型的明确表达式,并对模型进行了仿真分析。

The results of the simulation analysis and experiments indicate that the loss of ultraviolet scattering transmission in atmosphere is high because of the particle scattering and absorbing in solar-blind zone; that is, the received power can descend 20 dB with the distance increasing 10 times. Therefore, the ultraviolet scattering is fit for short range communication. In short range, the pulse extension due to scattering is at microsecond order and its influence for low and moderate bit rate communication systems is weak. Since the light output power of a single ultraviolet LED is low, a multi-LED array can be used to increase the transmit power and extend the communication range.

仿真分析与实验结果显示:日盲区紫外光在大气中散射传输时由于大气粒子的强烈散射与吸收,传输损耗较大,距离每增加10倍,接收功率下降20dB,因此日盲区紫外光大气散射通信适用于近距离通信场合;近距离传输时散射造成的光脉冲多径展宽为微秒量级,对中低速通信系统影响较小;单个紫外LED发光功率较低,可通过多个LED阵列来提高发射功率,增大通信距离。

According to dispersion relations, The relations of the incident angle, reflection angle and refraction angle equations with bicrystal parameters and wave vector are obtained respectively. The variation of the reflection angle and refraction angle with the incident angle for certain bicrystal parameters is presented by angle quations.

根据晶体的色散关系解出了入射角、反射角和折射角关于晶体参量及波矢的方程,并根据角度方程给出了在一定参量下反射角和折射角关于入射角变化的关系图,以图示的方法显示了光束在界面处的异常性质。

Critical angle of refraction - semi-circular cylindrical mobile light source, the incident angle change the size of refraction angle to change at this time, when the refraction angle = 90 degrees, which is critical at this time angle of incidence angle, the critical angle of water at 40 degrees large about anything mobile source of water in the water screen that is a reflection of light, a phenomenon that total reflection.

光折射的临界角定义:光折射角=90度时,入射角即为临界角,按二方法,将半导体激光光源去掉铁夹,吸附在右下角的铁板上入射光对准中心,即产生折射光线,沿半圆形柱面移动光源,改变入射角的大小,这时折射角也改变,当折射角=90度时,这时入射角即为临界角,水的临界角大的在40度左右,再做移动光源在水中的水屏即出现反射光线,这种现象称全反射。

A formula was proposed to explain the effects of secondary-scattering in the electron impact experiment, based on this formula, and the secondary-scattering coefficient as a function of the scattering angle was investigated.

在一定假设下利用公式解释了在电子碰撞实验中二次散射效应对实验测量的影响,并在此公式的基础上研究了对CO不同跃迁的二次散射系数随角度的变化关系。

From the simulation,the distribution of single and bulk scattering was obtained and it was found that the scattering distribution was focused in forward scattering at a small angle,and that the scattered laser might be absolute polarized light.

通过模拟得到单分系和多分系的散射分布特征,得出散射强度主要集中在前向小角度散射的结论,并讨论了散射光的偏振特性,得出散射光存在完全偏振光的结论。

Vadim Backman, PhD, a professor of biomedical engineering at Northwestern University in Evanston, Illinois, and colleagues, recently developed the 2 complementary optical techniques that were used in the study. The 4-dimensional elastic light-scattering spectroscopy (4D-ELF) and low-coherence enhanced backscattering spectroscopy use the elastic light-scattering signals from tissue that exhibit characteristic structure-dependent signatures in wavelength and scattering angle, explain the researchers in their paper.

伊利诺斯州埃文斯顿西北学的Vadim Backman生物医学工程博士与其同事,在此研究中应用最近发展的两项互补式光学技术,四维弹性光散射光谱(4D-ELF)与低相干散射增强光谱,运用组织中特殊结构表现的波长、与散射角度的弹性光散射信号来解释这项研究。

Vadim Backman, PhD, a professor of biomedical engineering at Northwestern University in Evanston, Illinois, and colleagues, recently developed the 2 complementary optical techniques that were used in the study. The 4-dimensional elastic light-scattering spectroscopy (4D-ELF) and low-coherence enhanced backscattering spectroscopy use the elastic light-scattering signals from tissue that exhibit characteristic structure-dependent signatures in wavelength and scattering angle, explain the researchers in their paper.

伊利诺斯州埃文斯顿西北大学的Vadim Backman生物医学工程博士与其同事,在此研究中应用最近发展的两项互补式光学技术,四维弹性光散射光谱(4D-ELF)与低相干散射增强光谱,运用组织中特殊结构表现的波长、与散射角度的弹性光散射信号来解释这项研究。

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