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Its use at the pump wavelength tuning and wavelength division multiplex system of the optical amplifier

机译:它在光放大器的泵浦波长调谐和波分复用系统中的使用

摘要

The variables and parameters previously understood to affect the gain spectrum of an optical amplifier 13 were: (1) the wavelengths to be amplified; (2) the input power levels at those wavelengths; (3) the characteristics of the amplifying medium 20; (4) the insertion loss spectra of the amplifier's components, including any filter(s) used for gain flattening; (5) the pump band chosen to pump the amplifying medium 20; and (6) the total amount of pump power supplied in the chosen pump band. An additional fundamental variable has been identified which can be used to control the gain spectrum of an optical amplifier 13, namely, the center wavelength of the spectrum of the pump's output power within the chosen pump band. Methods and apparatus for using this variable for this purpose are disclosed. For example a, transmission system is disclosed having a transmitter 11 and a receiver 10 connected by an optical fiber 12. A plurality of optical amplifiers 13 are located along the optical fiber 12 to amplify signal channels between the transmitter and receiver. Each of the amplifiers has a pump light source 21, the wavelength of which is such that contributions to differential gain due to pump light wavelength related effects is substantially reduced. Also disclosed is a WDM transmission system having a transmission path including a concatenation of laser diode pumped optical amplifiers 13 wherein the gain spectrum of an amplifier is controlled at least in part by a feedback loop regulating the temperature of its laser diode pump 21. The feedback loop may for instance derive its control signal from a measure of the drive current applied to the pump, of the emission wavelength of the pump, or of the disparity between the power output from the amplifier in one of the multiplexed signal channels and that from at least one other of the channels. IMAGE
机译:先前被理解为影响光放大器13的增益谱的变量和参数是:(1)要放大的波长; (2)在这些波长下的输入功率水平; (3)放大介质20的特性; (4)放大器组件的插入损耗谱,包括用于增益平坦化的任何滤波器; (5)选择泵浦带以泵浦放大介质20; (6)在所选泵浦带中提供的泵浦功率总量。已经确定了附加的基本变量,该附加的基本变量可用于控制光放大器13的增益频谱,即,在所选泵浦频带内的泵浦输出功率的频谱的中心波长。公开了为此目的使用该变量的方法和设备。例如,公开了一种传输系统,其具有通过光纤12连接的发射器11和接收器10。沿着光纤12设置多个光放大器13,以放大发射器和接收器之间的信号信道。每个放大器具有泵浦光源21,该泵浦光源21的波长使得由于与泵浦光波长相关的影响而对差分增益的贡献被大大减小。还公开了一种具有传输路径的WDM传输系统,该传输路径包括串联的激光二极管泵浦光放大器13,其中,放大器的增益谱至少部分地通过调节其激光二极管泵浦21的温度的反馈回路来控制。例如,环路可以从对施加到泵的驱动电流,泵的发射波长,或在多路复用信号通道之一中的放大器输出的功率与从多路复用器的输出功率之间的差异测量得出其控制信号。至少一个其他渠道。 <图像>

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