Tunable Mass Separation via Negative Mobility

A. Słapik, J. Łuczka, P. Hänggi, and J. Spiechowicz
Phys. Rev. Lett. 122, 070602 – Published 21 February 2019

Abstract

A prerequisite for isolating diseased cells requires a mechanism for effective mass-based separation. This objective, however, is generally rather challenging because typically no valid correlation exists between the size of the particles and their mass value. We consider an inertial Brownian particle moving in a symmetric periodic potential and subjected to an externally applied unbiased harmonic driving in combination with a constant applied bias. In doing so, we identify a most efficient separation scheme which is based on the anomalous transport feature of negative mobility, meaning that the immersed particles move in the direction opposite to the acting bias. This work is the first of its kind in demonstrating a tunable separation mechanism in which the particle mass targeted for isolation is effectively controlled over a regime of nearly 2 orders of mass magnitude upon changing solely the frequency of the external harmonic driving. This approach may provide mass selectivity required in present and future separation of a diversity of nano- and microsized particles of either biological or synthetic origin.

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  • Received 19 September 2018
  • Revised 22 November 2018

DOI:https://doi.org/10.1103/PhysRevLett.122.070602

© 2019 American Physical Society

Physics Subject Headings (PhySH)

Statistical Physics & Thermodynamics

Authors & Affiliations

A. Słapik1, J. Łuczka1, P. Hänggi2,3, and J. Spiechowicz1,2

  • 1Institute of Physics and Silesian Center for Education and Interdisciplinary Research, University of Silesia, 41-500 Chorzów, Poland
  • 2Institute of Physics, University of Augsburg, D-86135 Augsburg, Germany
  • 3Nanosystems Initiative Munich, Schellingstraße 4, D-80799 München, Germany

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Issue

Vol. 122, Iss. 7 — 22 February 2019

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