paper

Demonstration of a free space rubidium atomic clock with noise below the quantum projection limit

arXiv:1912.10218 · doi:10.1103/PhysRevLett.125.043202

Abstract

A technique is demonstrated that allows free space atomic fountain clocks and interferometers to utilize optical cavity generated spin-squeezed states with over atoms. Fluorescence imaging is used for population spectroscopy, after a free fall time of 4 milliseconds, to resolve a single-shot phase sensitivity of microradians, which is decibels (dB) below the quantum projection limit. The dynamic range is observed to be 100 milliradians. When operating as a microwave atomic clock with atoms at a 3.6 ms Ramsey time, a single-shot fractional frequency stability of is reported, dB below the quantum projection limit.