Thermal transpiration at the microscale: a Crookes cantilever

Local temperature inhomogeneities in systems containing micron and submicron objects can result in unexpected consequences. If the mean free path of the host gas constituents is comparable to a characteristic length of the system, then a net exchange of momentum occurs between the constituents and t...

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Veröffentlicht in:Physical review letters 2003-03, Vol.90 (12), p.124503-124503, Article 124503
Hauptverfasser: Passian, A, Warmack, R J, Ferrell, T L, Thundat, T
Format: Artikel
Sprache:eng
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Zusammenfassung:Local temperature inhomogeneities in systems containing micron and submicron objects can result in unexpected consequences. If the mean free path of the host gas constituents is comparable to a characteristic length of the system, then a net exchange of momentum occurs between the constituents and the involved surfaces. For a given temperature gradient and a given pressure range, this results in the presence of Knudsen and Knudsen-like forces (KF). The pressure dependence of these forces has been studied using a microelectromechanical system composed of a microcantilever near a substrate surface. Nano-Newton scale KF are observed by the bending of the microcantilever as monitored by the charge variation on the microcantilever-substrate assembly in a capacitive mode.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.90.124503