Abstract
We analyze the relaxation of the particle number fluctuations in a membrane channel at arbitrary particle-channel interaction and derive general expressions for the relaxation time and low-frequency limit of the power spectral density. These expressions simplify significantly when the channel is symmetric. For a square-well potential of mean force that occupies the entire channel, we verify the accuracy of the analytical predictions by Brownian dynamics simulations. For such a channel we show that as the depth of the well increases, the familiar scaling of the relaxation time with the channel length squared is transformed into a linear dependence on the length. © 2008 American Institute of Physics.
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CITATION STYLE
Zitserman, V. Y., Berezhkovskii, A. M., Pustovoit, M. A., & Bezrukov, S. M. (2008). Relaxation and fluctuations of the number of particles in a membrane channel at arbitrary particle-channel interaction. Journal of Chemical Physics, 129(9). https://doi.org/10.1063/1.2972981
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