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Optical convolution with a rectangular frequency comb for almost ideal sampling

机译:具有矩形频率梳的光卷积,几乎理想的采样

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According to the sampling theorem, bandwidth limited signals can be seen as superposition of time shifted sinc pulses weighted with the sampling values. Since sine pulses are orthogonal to each other, bandlimited signals can be perfectly sampled by an integration over the product between them and a sinc pulse with the correct time shift and bandwidth. Because sinc pulses have an infinite time length, they cannot be realized experimentally. Instead, generating a periodical sinc pulse sequence is straightforward. For a low duty cycle the pulses in such a sequence come close to single sinc pulses and thus the sampling might come closer to ideal sampling. In the frequency domain, this nearly ideal sampling is represented by a convolution between the signal spectrum and a rectangular frequency comb with many lines. The bandwidth of the comb corresponds to the sampling rate, while a bigger number of comb lines reduces the duty cycle and might enhance the sampling quality. We present the generation of a flat frequency comb with up to 33 lines in the optical domain as well as how to convolve it with an optical input spectrum for optical sampling. Already with one Mach-Zehnder modulator driven with m equidistant radio frequencies, the sampling with a comb consisting of 2m+1 lines can be realized. Additionally, with a second Mach-Zehnder modulator driven with n equidistant radio frequencies, the comb line number can be enhanced to (2m+1)(2n+1).
机译:根据采样定理,带宽受限信号可以被看作是时间叠加移的采样值的加权的sinc脉冲。由于正弦脉冲彼此正交,带限信号可以完全通过在它们并以正确的时间偏移和带宽的正弦脉冲之间的乘积的积分采样。因为正弦脉冲具有无限时间长度,它们不能用实验实现。相反,产生周期性正弦脉冲序列是直截了当的。对于低占空比在这样的序列中的脉冲接近单个正弦脉冲,并且因此可能采样更接近理想采样。在频域中,这几乎是理想的采样是通过信号的频谱和矩形频率梳与许多线之间的卷积表示。梳对应于采样率的带宽,而梳状线更大的数目减少了的占空比,并可能提高采样质量。我们提出了一个平坦的频率梳的产生具有高达33条线路在光域以及如何与用于光学采样的光输入光谱卷积它。已与一个马赫 - 策德尔调制器具有m等距离无线电频率驱动时,与由2米的梳采样+ 1行即可实现。另外,与第二马赫 - 曾德调制器,其中n等距离无线电频率驱动时,梳状线数可以被增强以(2M + 1)(2N + 1)。

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