AI Article Synopsis

  • * The system achieved a relative precision of 1.2 × 10 and a relative accuracy of 1.4 × 10 at a sampling rate of 100 Hz, effectively determining absolute frequency variations in the MHz range.
  • * Utilizing a single laser instead of two separate ones minimized the size, complexity, and cost, while still ensuring high measurement precision and real-time functionality.

Article Abstract

A single, free-running, dual-wavelength mode-locked, erbium-doped fibre laser was exploited to measure the absolute frequency of continuous-wave terahertz (CW-THz) radiation in real time using dual THz combs of photo-carriers (dual PC-THz combs). Two independent mode-locked laser beams with different wavelengths and different repetition frequencies were generated from this laser and were used to generate dual PC-THz combs having different frequency spacings in photoconductive antennae. Based on the dual PC-THz combs, the absolute frequency of CW-THz radiation was determined with a relative precision of 1.2 × 10 and a relative accuracy of 1.4 × 10 at a sampling rate of 100 Hz. Real-time determination of the absolute frequency of CW-THz radiation varying over a few tens of GHz was also demonstrated. Use of a single dual-wavelength mode-locked fibre laser, in place of dual mode-locked lasers, greatly reduced the size, complexity, and cost of the measurement system while maintaining the real-time capability and high measurement precision.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5301209PMC
http://dx.doi.org/10.1038/srep42082DOI Listing

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