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OBP与DBP联合补偿的112Gb/s DP-16QAM信号传输性能分析
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作者 陈志江 刘逢清 《光通信技术》 北大核心 2017年第4期16-19,共4页
对比分析了单独使用数字反向传输(DBP)补偿、单独使用光反向传输(OBP)补偿以及两者联合补偿时,DP-16QAM调制信号在传输1600km后误码率的变化情况。提出了OBP与DBP的两种结合方式:OBP与不同计算步长或不同反向传输距离的DBP结合。通过仿... 对比分析了单独使用数字反向传输(DBP)补偿、单独使用光反向传输(OBP)补偿以及两者联合补偿时,DP-16QAM调制信号在传输1600km后误码率的变化情况。提出了OBP与DBP的两种结合方式:OBP与不同计算步长或不同反向传输距离的DBP结合。通过仿真对比实验证明,OBP与不同反向传输距离DBP的结合方式对系统的改善较为明显。 展开更多
关键词 数字反向传输 光反向传播 误码率
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Cross-Propagation Sum-Frequency Generation Vibrational Spectroscopy
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作者 付力 陈顺利 +1 位作者 干为 王鸿飞 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第1期70-80,I0001,I0002,共13页
Here we report the theory formulation and the experiment realization of sum-frequency generation vibrational spectroscopy (SFG-VS) in the cross-propagation (XP) geometry or configuration. In the XP-SFG-VS, the vis... Here we report the theory formulation and the experiment realization of sum-frequency generation vibrational spectroscopy (SFG-VS) in the cross-propagation (XP) geometry or configuration. In the XP-SFG-VS, the visible and the infrared (IR) beams in the SFG experiment are delivered to the same location on the surface from visible and IR incident planes perpendicular to each other, avoiding the requirement to have windows or optics to be transparent to both the visible and IR frequencies. Therefore, the XP geometry is applicable to study surfaces in the enclosed vacuum or high pressure chambers with far infrared (FIR) frequencies that can directly access the metal oxide and other lower frequency surface modes, with much broader selection of visible and IR transparent window materials. The potential applications include surface science, material science, fundamental catalytic sciences, as well as low temperature molecular sciences, etc. 展开更多
关键词 Sum-frequency generation Vibrational spectroscopy Co-propagation Counter-propagation Cross-propagation
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Dynamic of the Dielectric Nano-Particle in Optical Tweezer Using Counter-Propagating Pulsed Laser Beams 被引量:1
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作者 Quang Quy Ho Dinh Hal Hoang 《Journal of Physical Science and Application》 2012年第9期345-351,共7页
In this article, the dynamical process of the dielectric particle in the optical tweezer using the counter-propagating Gaussian pulses is investigated by the Langevin equation concerning the Brownian motion. The tempo... In this article, the dynamical process of the dielectric particle in the optical tweezer using the counter-propagating Gaussian pulses is investigated by the Langevin equation concerning the Brownian motion. The temporal stabilities of particle is simulated. The influence of the duration, repetition period and delay time between pulses on stability is discussed. 展开更多
关键词 Optical trap optical tweezer Gaussian pulsed beam optical force Brownian motion Langevin equation.
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