Physical Review B · 2012 · 25 citations · 30 references
Materials ScienceEngineeringMicromechanicsMicrofabricationMechanicsSurface EnergySurface ScienceApplied PhysicsQuality FactorSurface TensionMicroscale SystemCantilever FormSurface Area CalculationsSoft MatterMicrofluidicsMicro-optical ComponentMicro-electromechanical SystemMicrostructure
Noise measurements were performed to determine the quality factor ($Q$) as a function of gas pressure $P$ for microresonators in cantilever form with systematically modified surfaces. In the free-molecular regime, which is dominated by internal energy losses, $Q$ was substantially decreased by more than an order of magnitude with increasing surface roughness. At higher pressures, within the molecular regime, $Q$ showed the typical inverse linear dependence on pressure $Q\ensuremath{\sim}{P}^{\ensuremath{-}1}$. However, in the molecular regime the $Q$ factor also showed a strong dependence on surface morphology as indicated by surface area calculations using measured roughness data and compared to those obtained from $Q\ensuremath{\sim}{P}^{\ensuremath{-}1}$ plots.
30
Theory of rubber friction and contact mechanics
B. N. J. Persson · The Journal of Chemical Physics · 2001 · 1.5K citations
K. L. Ekinci, M. L. Roukes · Review of Scientific Instruments · 2005 · 1.3K citations · Full text
Nanosensors, Engineering, Microelectromechanical Systems +16
A tunable carbon nanotube electromechanical oscillator
V. A. Sazonova, Yuval Yaish, Hande Üstünel et al. · Nature · 2004 · 1.3K citations · Full text
Thermoelastic damping in micro- and nanomechanical systems
Ron Lifshitz, M. L. Roukes · Physical review. B, Condensed matter · 2000 · 1.2K citations · Full text