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基于表面声波滤波器激励的时间间隔测量装置,具有1皮秒的精度和稳定性。

Time interval measurement device based on surface acoustic wave filter excitation, providing 1 ps precision and stability.

作者信息

Panek Petr, Prochazka Ivan

机构信息

Institute of Photonics and Electronics, Academy of Sciences of the Czech Republic, Chaberska 57, 182 51 Prague, Czech Republic.

出版信息

Rev Sci Instrum. 2007 Sep;78(9):094701. doi: 10.1063/1.2779217.

Abstract

This article deals with the time interval measurement device, which is based on a surface acoustic wave (SAW) filter as a time interpolator. The operating principle is based on the fact that a transversal SAW filter excited by a short pulse can generate a finite signal with highly suppressed spectra outside a narrow frequency band. If the responses to two excitations are sampled at clock ticks, they can be precisely reconstructed from a finite number of samples and then compared so as to determine the time interval between the two excitations. We have designed and constructed a two-channel time interval measurement device which allows independent timing of two events and evaluation of the time interval between them. The device has been constructed using commercially available components. The experimental results proved the concept. We have assessed the single-shot time interval measurement precision of 1.3 ps rms that corresponds to the time of arrival precision of 0.9 ps rms in each channel. The temperature drift of the measured time interval on temperature is lower than 0.5 ps/K, and the long term stability is better than +/-0.2 ps/h. These are to our knowledge the best values reported for the time interval measurement device. The results are in good agreement with the error budget based on the theoretical analysis.

摘要

本文介绍了一种基于表面声波(SAW)滤波器作为时间内插器的时间间隔测量装置。其工作原理基于这样一个事实:由短脉冲激发的横向SAW滤波器可以在窄频带之外生成频谱高度抑制的有限信号。如果在时钟节拍对两个激励的响应进行采样,那么它们可以从有限数量的样本中精确重建,然后进行比较,以确定两个激励之间的时间间隔。我们设计并构建了一种双通道时间间隔测量装置,该装置允许对两个事件进行独立计时,并评估它们之间的时间间隔。该装置使用市售组件构建而成。实验结果验证了这一概念。我们评估了单次时间间隔测量精度,均方根误差为1.3 ps,这对应于每个通道0.9 ps均方根误差的到达时间精度。测量的时间间隔随温度的漂移低于0.5 ps/K,长期稳定性优于±0.2 ps/h。据我们所知,这些是时间间隔测量装置所报道的最佳值。结果与基于理论分析的误差预算高度吻合。

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