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Photonic generation of W-band arbitrary waveforms with high time-bandwidth products enabling 3.9 mm range resolution

  • Yihan Li
  • , Amir Rashidinejad
  • , Jhih Min Wun
  • , Daniel E. Leaird
  • , Jin Wei Shi
  • , Andrew M. Weiner*
  • *此作品的通讯作者
  • Purdue University
  • National Central University

科研成果: 期刊稿件文章同行评审

摘要

Ultrabroadband millimeter-wave and subterahertz waveforms offer significant potential, from ultrahighspeed communications to high-resolution radar. Electronic generation of broadband arbitrary waveforms at these frequencies suffers from limited digital-to-analog converter speed and high timing jitter. Photonicassisted techniques, such as those based on optical shaping and frequency-to-time mapping, can overcome these difficulties. Nevertheless, previous photonic arbitrary waveform generation demonstrations are confined to microwave and low millimeter-wave frequencies due to limited optical-to-electrical conversion bandwidth. Here, by utilizing cutting-edge photodetector technology, we report the first generation, wireless transmission, and measurement of substantially complex and highly stable arbitrary waveforms in the W-band (75–110 GHz). These waveforms exhibit high time-bandwidth products up to 600, arbitrarily extendable repetition periods, and phase-noise performance substantially better than state-of-the-art electronic arbitrary waveform generators. The utility of the generated waveforms is demonstrated in multi-target ranging, where a depth resolution of 3.9 mm, unprecedented in the W-band, is achieved over more than 5 m.

源语言英语
页(从-至)446-454
页数9
期刊Optica
1
6
DOI
出版状态已出版 - 2014
已对外发布

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