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    Simulation of gain clamped L band erbium doped fiber amplifier using single fiber grating
    单根光栅箝制的L-band掺铒光纤放大器模拟
    When the VSMC is clamped at -40 mV, depolarizing the membrane potential at increasing steps of 10 mV could evoke a series of outward potassium currents without any deactivation.
    将血管平滑肌细胞箝制在-40mV,以10mV的步长连续去极化可引出一系列外向电流,电流随时间的延长而增大,直至达稳态,无失活; 去极化的幅度增加电流也不断增大;
    Results from both current-clamp and voltage-clamp experimentS showed thatthe low threshold Ca2+ conductance was inhibited by ACh in most (82%) of the LGNneurons tested, even when the membrane potential was clamped to the control level.
    电流箝位和电压箝位实验结果都显示:将膜电位箝制到给药前的对照水平,排除了乙酰胆碱的去极化作用后,大多数(82%)外膝体神经元的低阈值钙电导仍然被乙酰胆碱所抑制。
    When VSMC is clamped at -40 mV,depolarizing the membrane potential at increasing steps of 10 mV could evoke a series of outward potassium cmrrents without any deactivation.
    将平滑肌细胞箝制在-40mV,以10mV的步距阶跃去极化(0~60mV)可产生一系列快速上升的外向电流,几无衰减,其激活曲线的V1/2为27.2mV。
    Two kinds of Mach-Zehnder interferometers (MZI) were constructed by semiconductor optical amplifier (SOA) and linear optical amplifier (LOA), respectively. Based on rate equations, the pumping amplification and gain clamped behaviors of LOA are simulated. With the control of probe beam power and bias current, all-optical XOR functionality is simulated using integrated SOA-MZI and LOA-MZI numerical model at 40 Gbit/s.
    基于半导体光放大器(SOA)和线性光放大器(LOA)构成的马赫曾德尔干涉仪(MZI),从速率方程出发,模拟了LOA的泵浦放大和增益箝制特性,建立了SOA MZI和LOA MZI结构全光异或门数值模型,通过控制探测光功率和偏置电流,实现了两路40Gbit/s信号的异或运算。
    A novel all-optical EDFA with flat and clamped gain is presented.
    给出了一种新型全光增益平坦动态增益箝制EDFA的结构.
 

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