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Chiral active fluids are known to have anomalous transport properties such as the so-called odd viscosity.
1902
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1907
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B. C. van Zuiden, J. Paulose, W. T. M. Irvine, D. Bartolo, and V. Vitelli, “Spatiotemporal order and emergent edge currents in active spinner materials,” Proceedings of the National Academy of Sciences , 201609572 (2016)
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A. Snezhko, “Complex collective dynamics of active torque-driven colloids at interfaces,” Current Opinion in Colloid and Interface Science 21
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I. Goldhirsch, “Stress, stress asymmetry and couple stress: From discrete particles to continuous fields,” Granular Matter 12
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N. C. Admal and E. B. Tadmor, “A Unified Interpretation of Stress in Molecular Systems,” Journal of Elasticity 100
2010
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S. Fürthauer, M. Strempel, S. W. Grill, and F. Jülicher, “Active chiral fluids,” The European Physical Journal E 35
2012
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M. C. Marchetti, J. F. Joanny, S. Ramaswamy, T. B. Liverpool, J. Prost, M. Rao, and R. A. Simha, “Hydrodynamics of soft active matter,” Reviews of Modern Physics 85
2013
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A. I. Jewett, Z. Zhuang, and J.-E. Shea, “Moltemplate a Coarse-Grained Model Assembly Tool,” Biophysical Journal 104
2013
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N. H. P. Nguyen, D. Klotsa, M. Engel, and S. C. Glotzer, “Emergent Collective Phenomena in a Mixture of Hard Shapes through Active Rotation,” Physical Review Letters 112
2014
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M. C. Marchetti, Y. Fily, S. Henkes, A. Patch, and D. Yllanes, “Minimal model of active colloids highlights the role of mechanical interactions in controlling the emergent behavior of active matter,” Current Opinion in Colloid and Interface Science 21
2016
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D. Banerjee, A. Souslov, A. G. Abanov, and V. Vitelli, “Odd viscosity in chiral active fluids,” Nature Communications 8
2017
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K. Klymko, D. Mandal, and K. K. Mandadapu, “Statistical mechanics of transport processes in active fluids: Equations of hydrodynamics,” The Journal of Chemical Physics 147
2017
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F. Jülicher, S. W. Grill, and G. Salbreux, “Hydrodynamic theory of active matter,” Reports on Progress in Physics 81
2018
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C. Scholz, M. Engel, and T. Pöschel, “Rotating robots move collectively and self-organize,” Nature Communications 9
2018
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A. Aubret, M. Youssef, S. Sacanna, and J. Palacci, “Targeted assembly and synchronization of self-spinning microgears,” Nature Physics 14
2018
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2018
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A. Maitra and M. Lenz, “Spontaneous rotation can stabilise ordered chiral active fluids,” Nature Communications 10
2019
Closest in time.
A. Souslov, K. Dasbiswas, M. Fruchart, S. Vaikuntanathan, and V. Vitelli, “Topological Waves in Fluids with Odd Viscosity,” Physical Review Letters 122
2019
Closest in time.