Multimode laser cooling and ultra-high sensitivity force sensing with nanowires
Abstract
Photo-induced forces can be used to manipulate and cool the mechanical motion of oscillators. When the oscillator is used as a force sensor, such as in atomic force microscopy, active feedback is an enticing route to enhancing measurement performance. Here, we show broadband multimode cooling of dB down to a temperature of ~K in the stationary regime. Through the use of periodic quiescence feedback cooling, we show improved signal-to-noise ratios for the measurement of transient signals. We compare the performance of real feedback to numerical post-processing of data and show that both methods produce similar improvements to the signal-to-noise ratio of force measurements. We achieved a room temperature force measurement sensitivity of N with integration time of less than ms. The high precision and fast force microscopy results presented will potentially benefit applications in biosensing, molecular metrology, subsurface imaging and accelerometry.
Cite
@article{arxiv.1502.03506,
title = {Multimode laser cooling and ultra-high sensitivity force sensing with nanowires},
author = {Mahdi Hosseini and Giovanni Guccione and Harry J. Slatyer and Ben C. Buchler and Ping Koy Lam},
journal= {arXiv preprint arXiv:1502.03506},
year = {2016}
}
Comments
16 pages and 3 figures for the main text, 14 pages and 5 figures for the supplementary information