Scaling of dissipation in megahertz-range micromechanical diamond oscillators
Mesoscale and Nanoscale Physics
2009-11-13 v1 Materials Science
Abstract
We report frequency and dissipation scaling laws for doubly-clamped diamond resonators. The device lengths range from 10 microns to 19 microns corresponding to frequency and quality-factor ranges of 17 MHz to 66 MHz and 600 to 2400 respectively. We find that the resonance frequency scales as 1/L^2 confirming the validity of the thin-beam approximation. The dominant dissipation comes from two sources; for the shorter beams, clamping loss is the dominant dissipation mechanism; while for the longer beams, surface losses provide a significant source of dissipation. We compare and contrast these mechanisms with other dissipation mechanisms to describe the data.
Keywords
Cite
@article{arxiv.cond-mat/0703079,
title = {Scaling of dissipation in megahertz-range micromechanical diamond oscillators},
author = {Matthias Imboden and Pritiraj Mohanty and Alexei Gaidarzhy and Janet Rankin and Brian W. Sheldon},
journal= {arXiv preprint arXiv:cond-mat/0703079},
year = {2009}
}
Comments
5 pages, two-column format. Related papers available at http://nano.bu.edu/