Fick's second law transformed: one path to cloaking in mass diffusion

Author:

Guenneau S.1,Puvirajesinghe T. M.2

Affiliation:

1. Institut Fresnel, UMR CNRS 7249, Aix Marseille Université, Campus de St Jérôme, Marseille Cedex 20 13397, France

2. Institut Paoli-Calmettes, UMR INSERM 1068, UMR CNRS 7258, Aix Marseille Université, Marseille, France

Abstract

Here, we adapt the concept of transformational thermodynamics, whereby the flux of temperature is controlled via anisotropic heterogeneous diffusivity, for the diffusion and transport of mass concentration. The n -dimensional, time-dependent, anisotropic heterogeneous Fick's equation is considered, which is a parabolic partial differential equation also applicable to heat diffusion, when convection occurs, for example, in fluids. This theory is illustrated with finite-element computations for a liposome particle surrounded by a cylindrical multi-layered cloak in a water-based environment, and for a spherical multi-layered cloak consisting of layers of fluid with an isotropic homogeneous diffusivity, deduced from an effective medium approach. Initial potential applications could be sought in bioengineering.

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

Reference31 articles.

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2. The Danish National Research Foundation for Biomembrane Physics (MEMPHYS) at the University of Southern Denmark. Odense: Bioimaging Science in Your Eyes. 2008 See http://www.scienceinyoureyes.com/index.php?id=80.

3. Enhanced accumulation of long-circulating liposomes modified with the nucleosome-specific monoclonal antibody 2C5 in various tumours in mice: gamma-imaging studies

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