Errors in PDH offset locking due to spurious spectral features
arXiv:2512.03900 · doi:10.1364/OE.572595
Abstract
The Pound-Drever-Hall (PDH) technique is widely used to stabilize the frequency of lasers. Here we report on a routinely underestimated source of error in PDH offset-locking: a shift in the lock point due to the unintended interaction between residual optical sidebands and higher-order spatial modes in misaligned Fabry-Perot cavities. Significant frequency deviations-up to 50% of the cavity linewidth-can arise when the optical offset is obtained from a sinusoidally driven EOM. We measure this deviation experimentally, find agreement with a simple model, and show how a spectrally-pure frequency offset can reduce the deviation by an order of magnitude. Our findings draw attention to a systematic effect of importance to precision optical spectroscopy, optical clocks, and quantum information science.
References in corpus (8)
- Blueprint for trapped ion quantum computing with metastable states
- Robust laser frequency stabilization by serrodyne modulation
- Suppression of residual amplitude modulation effect in the Pound-Drever-Hall locking
- A basic introduction to ultrastable optical cavities for laser stabilization
- Synthetic FM triplet for AM-free precision laser stabilization and spectroscopy
- A practical guide to feedback control for Pound-Drever-Hall laser linewidth narrowing
- Implementing an electronic sideband offset lock for precision spectroscopy in radium
- Quadrature amplitude modulation for electronic sideband Pound-Drever-Hall laser frequency locking