AI Article Synopsis

  • The soliton microcomb offers a new method for precise distance measurement, thanks to its high repetition rate and compact integration.
  • The researchers achieved a stabilized repetition rate of 48.98 GHz, allowing accurate distance measurements up to 64 mm with very low error margins.
  • This innovative system, the first of its kind using microcomb technology, boasts precision in the range of tens of nanometers, which could benefit industries like satellite operations, advanced manufacturing, and nanotechnology.

Article Abstract

The soliton microcomb has sparked interest in high-precision distance measurement, owing to its ultrahigh repetition rate and chip-integrated scale. We report absolute distance measurements based on synthetic wavelength interferometry with a soliton microcomb. We stabilized the repetition rate of 48.98 GHz through injection locking, with fluctuations below 0.25 Hz. Distance measurements up to 64 mm were demonstrated, presenting residuals below 2.7 m compared with a referenced laser interferometer. Long-term distance measurements were made at two fixed positions of approximately 0.2 m and 1.4 m, resulting in a minimum Allan deviation as low as 56.2 nm at an average time of 0.05 s. The dynamic demonstration illustrated that the proposed system could track round-trip motion of 3 mm at speeds up to 100 mm/s. The proposed distance measurement system is, to our knowledge, the first microcomb-based synthetic wavelength interferometer and achieves a ranging precision of tens of nanometers, with potential applications in the fields of satellite formation flying, high-end manufacturing, and micro-nano processing.

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Source
http://dx.doi.org/10.1364/OL.499291DOI Listing

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