arXiv · 2006.09466
Rubidium Isotope Shift Measurement using Noisy Lasers
Abstract
Data students collect from the typical advanced undergraduate laboratory on Saturated Absorption Spectroscopy (SAS) of rubidium can be used to measure the isotope shift and thus leads to an estimate of the isotopic ground state energy shift. This helps students refine their `picture' of the atomic ground state. We describe theoretically why this laboratory works well with free-running laser diodes, demonstrate it experimentally using these lasers tuned to either principal near-infrared transitions, and show an extension of the laboratory using the modulation transfer spectroscopy method.
Explore related subjects
Keep this discovery
Theodore J. Bucci, Jonathan Feigert, Michael Crescimanno, Brandon Cahmberlain, Alex Giovannone. 2020-06-16. Rubidium Isotope Shift Measurement using Noisy Lasers. https://doi.org/10.1119/10.0003540
Cite the original work for its findings. Save a collection to share your selection of sources.