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  Geometry of thresholdless active flow in nematic microfluidics

Green, R., Toner, J., & Vitelli, V. (2017). Geometry of thresholdless active flow in nematic microfluidics. Physical Review Fluids, 2(10):. doi:10.1103/PhysRevFluids.2.104201.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-0000-62F6-C 版のパーマリンク: https://hdl.handle.net/21.11116/0000-0001-9AC6-2
資料種別: 学術論文

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 作成者:
Green, Richard1, 著者
Toner, John2, 著者           
Vitelli, Vincenzo1, 著者
所属:
1external, ou_persistent22              
2Max Planck Institute for the Physics of Complex Systems, Max Planck Society, ou_2117288              

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キーワード: -
 MPIPKS: Living matter
 要旨: Active nematics are orientationally ordered but apolar fluids composed of interacting constituents individually powered by an internal source of energy. When activity exceeds a system-size-dependent threshold, spatially uniform active apolar fluids undergo a hydrodynamic instability leading to spontaneous macroscopic fluid flow. Here we show that a special class of spatially nonuniform configurations of such active apolar fluids display laminar (i.e., time-independent) flow even for arbitrarily small activity. We also show that two-dimensional active nematics confined on a surface of nonvanishing Gaussian curvature must necessarily experience a nonvanishing active force. This general conclusion follows from a key result of differential geometry: Geodesics must converge or diverge on surfaces with nonzero Gaussian curvature. We derive the conditions under which such curvatureinduced active forces generate thresholdless flow for two-dimensional curved shells. We then extend our analysis to bulk systems and showhowto induce thresholdless active flowby controlling the curvature of confining surfaces, external fields, or both. The resulting laminar flow fields are determined analytically in three experimentally realizable configurations that exemplify this general phenomenon: (i) toroidal shells with planar alignment, (ii) a cylinder with nonplanar boundary conditions, and (iii) a Frederiks cell that functions like a pump without moving parts. Our work suggests a robust design strategy for active microfluidic chips and could be tested with the recently discovered living liquid crystals.

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言語: eng - English
 日付: 2017-10-312017-10-31
 出版の状態: 出版
 ページ: -
 出版情報: -
 目次: -
 査読: -
 識別子(DOI, ISBNなど): ISI: 000414106000002
DOI: 10.1103/PhysRevFluids.2.104201
 学位: -

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出版物 1

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出版物名: Physical Review Fluids
種別: 学術雑誌
 著者・編者:
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出版社, 出版地: American Physical Society
ページ: - 巻号: 2 (10) 通巻号: 104201 開始・終了ページ: - 識別子(ISBN, ISSN, DOIなど): ISSN: 2469-990X
CoNE: https://pure.mpg.de/cone/journals/resource/2469-990X