Order and Fluctuations in Collective Dynamics of Swimming Bacteria : Experimental Exploration of Active Matter Physics
2020 ed.
Book Details
Format
Hardback or Cased Book
Book Series
Springer Theses
ISBN-10
9813299975
ISBN-13
9789813299979
Edition
2020 ed.
Publisher
Springer Verlag, Singapore
Imprint
Springer Verlag, Singapore
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Feb 1st, 2020
Print length
128 Pages
Product Classification:
Cybernetics & systems theoryCybernetics and systems theoryCondensed matter physics (liquid state & solid state physics)Condensed matter physics (liquid state and solid state physics)Optical physicsMathematical / Computational / Theoretical physicsMathematical physicsPhysical chemistryMaths for engineers
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This thesis focuses on experimental studies on collective motion using swimming bacteria as model active-matter systems.
This thesis focuses on experimental studies on collective motion using swimming bacteria as model active-matter systems. It offers comprehensive reviews of state-of-the-art theories and experiments on collective motion from the viewpoint of nonequilibrium statistical physics. The author presents his experimental studies on two major classes of collective motion that had been well studied theoretically. Firstly, swimming filamentous bacteria in a thin fluid layer are shown to exhibit true, long-range orientational order and anomalously strong giant density fluctuations, which are considered universal and landmark signatures of collective motion by many numerical and theoretical works but have never been observed in real systems. Secondly, chaotic bacterial turbulence in a three-dimensional dense suspension without any long-range order as described in the first half is demonstrated to be capable of achieving antiferromagnetic vortex order by imposing a small number of constraints with appropriate periodicity. The experimental results presented significantly advance our fundamental understanding of order and fluctuations in collective motion of motile elements and their future applications.
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