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High-frequency RIN transfer in fibre optic parametric amplifiers

机译:光纤参数放大器中的高频RIN传输

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摘要

Fibre optic parametric amplifiers (FOPAs) are versatile devices for amplification at arbitrary wavelengths, as well as a wide range of optical signal processing applications, including switching, wavelength conversion, regeneration, pulse generation etc [1]. Transfer of intensity fluctuations from the pump to the signal (hereafter referred to as relative intensity noise transfer, RINT) affects the quality of the amplified signal due to the pump power dependence of the gain and the ultrafast nature of the Kerr nonlinearity [1–4]. For high-speed signal processing applications, the pump may be modulated at several hundreds of GHz or Gbit/s and it is therefore important to quantify the RINT at such high frequencies. To the best of our knowledge, the frequency dependence of pump-to-signal RINT has only been investigated theoretically and experimentally in single-pump FOPAs for low intensity modulation frequencies (IMFs) (<10 GHz) [3], where the RINT is frequency independent. However, when the IMF of the pump is of the order of the reciprocal walk-off delay induced by group velocity mismatch between the pump and signal, the effect of walk-off can no longer be neglected. In this work, the high-frequency RINT behaviour is investigated numerically in single pump FOPAs.
机译:光纤参量放大器(FOPA)是用于在任意波长处进行放大的通用设备,以及广泛的光信号处理应用,包括切换,波长转换,再生,脉冲生成等[1]。强度波动从泵到信号的传递(以下称为相对强度噪声传递,RINT)由于增益的泵浦功率依赖性和Kerr非线性的超快特性而影响放大信号的质量[1-4] ]。对于高速信号处理应用,可以在几百GHz或Gbit / s的速率下调制泵浦,因此重要的是在这样的高频下量化RINT。据我们所知,仅在理论上和实验上针对低强度调制频率(IMF)(<10 GHz)在单泵FOPA中对泵至信号RINT的频率依赖性进行了研究[3],其中RINT为频率无关。但是,当泵的IMF约为由泵和信号之间的群速度失配引起的倒退延迟的数量级时,就不再可以忽略掉跳闸的影响。在这项工作中,对单泵FOPA中的高频RINT行为进行了数值研究。

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