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dc.contributor.authorHsiao, Yi-Tengen_US
dc.contributor.authorWang, Jing-Huien_US
dc.contributor.authorWu, Kuan-Tingen_US
dc.contributor.authorTsai, Jengjanen_US
dc.contributor.authorChang, Cheng-Hungen_US
dc.contributor.authorWoon, Wei-Yenen_US
dc.date.accessioned2015-07-21T11:21:00Z-
dc.date.available2015-07-21T11:21:00Z-
dc.date.issued2014-11-17en_US
dc.identifier.issn0003-6951en_US
dc.identifier.urihttp://dx.doi.org/10.1063/1.4902111en_US
dc.identifier.urihttp://hdl.handle.net/11536/123898-
dc.description.abstractBacterial carpets consist of randomly anchored uni-polar-flagellated sodium-motive bacterial matrix are prepared by flow deposition. Collective flow dynamics across the bacterial carpets are probed with optical tweezers-microsphere assay. Around the center of a uniform bacterial cluster, collective forces that pull microsphere towards carpet surface are detected at a distance of 10 mu m away from carpets. At sodium-motive driving over a critical value, the force magnitudes increase abruptly, suggesting a threshold-like transition of hydrodynamic synchronization across bacterial carpet. The abrupt force increase is explained in term of bifurcation to phase synchronization in a noisy non-linearly coupled rotor array mediated by hydrodynamic interactions. (C) 2014 AIP Publishing LLC.en_US
dc.language.isoen_USen_US
dc.titleCollective flow dynamics across a bacterial carpet: Understanding the forces generateden_US
dc.typeArticleen_US
dc.identifier.doi10.1063/1.4902111en_US
dc.identifier.journalAPPLIED PHYSICS LETTERSen_US
dc.citation.volume105en_US
dc.citation.issue20en_US
dc.contributor.department物理研究所zh_TW
dc.contributor.departmentInstitute of Physicsen_US
dc.identifier.wosnumberWOS:000345513300082en_US
dc.citation.woscount0en_US
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