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- Impact of Rayleigh Backscattering on Noise Characteristics of Distributed Fiber Raman Amplifiers[J]. 引用该论文 张巍;彭江得;刘小明;范崇澄.
- At first, an experimental study has been conducted to clarify the significance of the Rayleigh backscattering, and the method to overcome the crosstalk penalty is presented. 因为莱曼放大器可同时放大双向的光信号,将有效率的延长波分多工被动光网路的距离。
- A modified noise figure measuring method is proposed so that the noise figure accounts for the MPI deriving from the sum of Rayleigh backscattering signal components. 随着拉曼增益的增加,输入信号功率越大、背向瑞利散射越大,多路干涉的影响越大。
- double Rayleigh backscattering(DRB) 双重瑞利背向散射
- Suppression of double Rayleigh backscattering noise in long haul transmission systems employing multi-stage back-pumped Raman fiber amplifiers 采用级连反向泵浦喇曼光纤放大器的长距离光纤传输系统中双重瑞利散射噪声的抑制
- Effects of Spectral Characteristics of Broad-Band Fiber Source to Rayleigh Backscattering Noise in Fiber-Optic Gyroscope 光纤陀螺中光源谱特性对后向散射的影响
- Rayleigh backscattering Rayleigh后向散射
- The Photoelectric Conversion Subsystem and Self-Diagnosing Subsystem of Rayleigh Backscatter and Sodium Resnance Lidar 大气激光雷达光电转换单元及其自检系统
- Average trip distance can be calculated by Rayleigh Distribution. 根据瑞利分布模型可以推算城市机动车平均出行距离。
- Prospecting metal mine goafs by Rayleigh wave method is introduced. 介绍用瑞雷波法检测金属矿山采空区。
- Some of the basic question about rayleigh quotient are discussed. 瑞利商是系统特征值问题中一个非常重要的概念。
- Rayleigh scatter determines the upwelling diffuse flux which can be absorbed. Rayleigh散射决定了能被吸收的向外的漫射通量。
- Detection and validation of Raman backscattering CO2 in atmosphere[J]. 引用该论文 洪光烈;张寅超;赵曰峰;邵石生;谭锟.
- At greater epicentral distances the Rayleigh waves become very prominent. 当离震中距离更大时,瑞雪波才变得显著。
- The effectiveness of Rayleigh model is verified by an actual applied example. 模型的有效性被应用实例所证明。
- The pairwire error probability over slow-fading Rayleigh channels are derived. 推导了该协作方案在慢瑞利衰落信道下的成对错误概率。
- There may be unreal peaks on backscattering signal curve in themeasurement of optical fiber links by OTDR. 用OTDR测试光纤线路时,其背向瑞利散射信号曲线上常出现幻峰。
- These results are agreement with the results of infrared absorption(IR) and Rutherford backscattering (RBS) analysis. 表面硅-埋层的界面和埋层-体硅的界面的化学结构无明显差异.;这些结果与红外吸收和离子背散射谱的分析结果相一致
- The SCP of backscattering signals approach the emissive center frequency with increase of ages. 随年龄的增大,质心位置越接近于发射超声的中心频率。
- The scientific name for this phenomenon is the Tyndall effect, more commonly known as Rayleigh scattering. 这种现象的科学名称为"泰多尔效应",更普遍的称之为"雷莱散射"。