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  Flow profile near a wall measured by double-focus fluorescence cross-correlation

Lumma, D., Best, A., Gansen, A., Feuillebois, F., Rädler, J. O., & Vinogradova, O. I. (2003). Flow profile near a wall measured by double-focus fluorescence cross-correlation. Physical Review E, 67(5): 056313.

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 Creators:
Lumma, D.1, Author           
Best, A.1, Author           
Gansen, A.1, Author           
Feuillebois, F.1, Author           
Rädler, Joachim O.1, Author           
Vinogradova, Olga I.1, Author           
Affiliations:
1MPI for Polymer Research, Max Planck Society, ou_1309545              

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 Abstract: We present an experimental approach to flow profiling within femtoliter sample volumes, which allows the high-precision measurements at the solid interface. The method is based on the spatial cross-correlation of the fluorescence response from labeled tracer particles (latex nanospheres or single dye molecules). Two excitation volumes, separated by a few micrometers, are created by two laser foci under a confocal microscope. The velocity of tracer particles is measured in a channel about 100 μm wide within a typical accuracy of 0.1%, and the positions of the walls are estimated independently of any hydrodynamic data. The underlying theory for the optical method is given for an arbitrary velocity profile, explicitly presenting the numerical convolutions necessary for a quantitative analysis. It is illustrated by using the Poiseuille flow of a Newtonian liquid with slip as an example. Our analysis yields a large apparent fluid velocity at the wall, which is mostly due to the impact of the colloidal (electrostatic) forces. This colloidal lift is crucially important in accelerating the transport processes of molecules and nanoparticles in microfluidic devices.

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Language(s): eng - English
 Dates: 2003-05
 Publication Status: Issued
 Pages: -
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 Table of Contents: -
 Rev. Type: -
 Identifiers: eDoc: 56203
ISI: 000183482400069
Other: P-03-100
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Title: Physical Review E
  Alternative Title : Phys. Rev. E
Source Genre: Journal
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Pages: - Volume / Issue: 67 (5) Sequence Number: 056313 Start / End Page: - Identifier: ISSN: 1063-651X