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Ultra Storage-Efficient Time Digitizer for Pseudorandom Single Photon Counter Implemented on a Field-Programmable Gate Array

机译:在现场可编程门阵列上实现的用于伪随机单光子计数器的超高效存储时间数字转换器

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摘要

Pseudorandom single photon counting is a novel time-resolved optical measurement method, which is advantageous over convention techniques in terms of data-acquisition speed and system cost. As a critical component of the pseudorandom single photon counter, the photon arriving time digitizer should be storage efficient for a high photon counting rate, while maintaining good time accuracy. We report an ultra storage-efficient time digitizer for a pseudorandom single photon counter in this paper, which is based on the asynchronous serial communication and can store the arriving time of every photon in 1-b memory space. In addition, a novel comb-wave modulator is proposed to achieve the dc balance required for asynchronous serial communication. Our prototype implemented on field-programmable gate arrays provides a time resolution of 400 ps. It can register up to 4.2-Giga photon arriving time tags with 1024 × 32-b memory space.
机译:伪随机单光子计数是一种新颖的时间分辨光学测量方法,在数据采集速度和系统成本方面优于常规技术。作为伪随机单光子计数器的关键组件,光子到达时间数字化仪应具有较高的光子计数率,并且必须保持良好的时间精度,并且必须高效存储。我们在本文中报告了一种用于伪随机单光子计数器的超高效存储时间数字转换器,它基于异步串行通信,可以将每个光子的到达时间存储在1-b存储空间中。另外,提出了一种新颖的梳状波调制器以实现异步串行通信所需的直流平衡。我们在现场可编程门阵列上实现的原型提供了400 ps的时间分辨率。它可以用1024×32-b的存储空间注册最多4.2千兆位光子到达时间标签。

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