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首页> 外文期刊>Applied optics >Linearized segmentation method for measuring the phase transfer function of a silicon Mach-Zehnder modulator by using the beat-frequency technique
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Linearized segmentation method for measuring the phase transfer function of a silicon Mach-Zehnder modulator by using the beat-frequency technique

机译:利用节拍频率技术测量硅Mach-Zehnder调制器的相移函数的线性化分割方法

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摘要

A linearity segmentation method for measuring the phase shift curve of silicon Mach-Zehnder modulators (SMZMs) as a function of applied electric field is presented. Applying a small sinusoidal signal to the traveling wave electrode of the SMZM, the upper and lower arms of the SMZM produce differential phase modulation effect. Meanwhile, a local oscillator source with a wavelength-adjustable function is employed to heterodyne the intensity modulated optical signal of the SMZM; thus, the modulated intensity signal in the optical field domain is transformed into the low-frequency electric field domain. Meanwhile, a balanced detector with a low-speed transimpedance amplifier is exploited to realize photoelectric conversion, which can suppress the direct-current component and improve the anti-noise ability. Extracting the beat-frequency and first-order harmonic sideband signals in the case of phase bias is 0 and pi, respectively, the phase shift slopes of the upper and lower arms can be calculated under different reverse PN voltages, and we can achieve the phase shift as a function of the modulation frequency and reverse PN voltage. The proposed method is supported by the simulation and measurement results and the key parameters of the SMZM, such as the radio frequency half-wave voltage, chirp characteristic, 3 dB bandwidth, etc., can be acquired from the phase shift curves of the upper and lower arms. (C) 2020 Optical Society of America
机译:提出了一种用于测量硅Mach-Zehnder调制器(SMZMS)相移曲线作为应用电场的函数的线性分割方法。将小正弦信号施加到SMZM的行进波电极,SMZM的上臂和下臂产生差分相位调制效果。同时,采用具有波长可调函数的本地振荡器源,用于外差的SMZM的强度调制光信号;因此,光场域中的调制强度信号被变换到低频电场域中。同时,利用具有低速跨阻抗放大器的平衡检测器来实现光电转换,可以抑制直流分量并提高抗噪声能力。在相位偏置的情况下提取节拍频率和一阶谐波边带信号分别为0和Pi,可以在不同的反向PN电压下计算上臂和下臂的相移斜面,我们可以实现相位作为调制频率和反向PN电压的函数。所提出的方法由模拟和测量结果支持,并且可以从鞋面的相移曲线获取SMZM的关键参数,例如射频半波电压,啁啾特性,3dB带宽等。和下臂。 (c)2020美国光学学会

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    《Applied optics》 |2020年第10期|共7页
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