arXiv · 1903.08868
Cascaded Rotational Doppler Effect
Abstract
We propose and substantiate experimentally the cascaded rotational Doppler effect for interactions of spinning objects with light carrying angular momentum. Based on the law of parity conservation for electromagnetic interactions, we reveal that the frequency shift can be doubled through cascading two rotational Doppler processes which are mirror-imaged to each other. This effect is further experimentally verified with a rotating half-wave plate, and the mirror-imaging process is achieved by reflecting the frequency-shifted circularly polarized wave upon a mirror with a quarter-wave plate in front of it. The mirror symmetry and thus parity conservation guarantees that this doubled frequency shift can be further multiplied with more successive mirror-imaging conjugations, with photons carrying spin and/or orbital angular momentum, which could be widely applied for detection of rotating systems ranging from molecules to celestial bodies with high precision and sensitivity.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Junhong Deng, King Fai Li, Wei Liu, Guixin Li. 2019-03-21. Cascaded Rotational Doppler Effect. https://doi.org/10.1364/ol.44.002346
Cite the original work for its findings. Save a collection to share your selection of sources.