We report the development of an ultrasensitive optomechanical sensor designed to improve the accuracy and precision of force measurements with atomic force microscopy. The sensors reach quality factors of 4.3x10^6 and force resolution on the femtonewton scale at room temperature. Self-calibration of the sensor is accomplished using radiation pressure to create a reference force. Self-calibration enables in situ calibration of the sensor in extreme environments, such as cryogenic ultra-high vacuum. The senor technology presents a viable route to force measurements at the atomic scale with uncertainties below the percent level.
@article{arxiv.1410.5725,
title = {A self-calibrating optomechanical force sensor with femtonewton resolution},
author = {John Melcher and Julian Stirling and Felipe Guzman Cervantes and Jon R. Pratt and Gordon A. Shaw},
journal= {arXiv preprint arXiv:1410.5725},
year = {2015}
}