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Article
Shock waves in capillary collapse of colloids: A model system for two-dimensional screened Newtonian gravity
Author/s | Bleibel, J.
Dietrich, Siegfried Domínguez Álvarez, Álvaro Oettel, Martin |
Department | Universidad de Sevilla. Departamento de Física Atómica, Molecular y Nuclear |
Publication Date | 2011-09-16 |
Deposit Date | 2017-07-17 |
Published in |
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Abstract | Using Brownian dynamics simulations, density functional theory, and analytical perturbation theory we study the collapse of a patch of interfacially trapped, micrometer-sized colloidal particles, driven by long-ranged ... Using Brownian dynamics simulations, density functional theory, and analytical perturbation theory we study the collapse of a patch of interfacially trapped, micrometer-sized colloidal particles, driven by long-ranged capillary attraction. This attraction is formally analogous to two-dimensional (2D) screened Newtonian gravity with the capillary length ˆλ as the screening length. Whereas the limit ˆλ→∞ corresponds to the global collapse of a self-gravitating fluid, for finite ˆλ we predict theoretically and observe in simulations a ringlike density peak at the outer rim of a disclike patch, moving as an inbound shock wave. Possible experimental realizations are discussed. |
Funding agencies | Deutsche Forschungsgemeinschaft / German Research Foundation (DFG) Gobierno de España |
Project ID. | SFB-TR6
FIS2008-01339 AIB2010DE-00263 |
Citation | Bleibel, J., Dietrich, S., Domínguez Álvarez, Á. y Oettel, M. (2011). Shock waves in capillary collapse of colloids: A model system for two-dimensional screened Newtonian gravity. Physical review Letters, 107 (12), 128302-1-128302-4. |
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