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  2. Odd viscosity in chiral active fluids | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/banerjee-2017/
    12 Feb 2024: Search. Odd viscosity in chiral active fluids. D. Banerjee, Anton Souslov, A.G. Abanov, V. Vitelli. January 2017. Abstract. We study the hydrodynamics of fluids composed of self-spinning objects such as chiral grains or colloidal particles subject
  3. We have moved to the University of Cambridge | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/news/move-to-cam/
    12 Feb 2024: Search. We have moved to the University of Cambridge. 1 Oct 2023. We are now part of the Theory of Condensed Matter group within the Cavendish Laboratory, Department of Physics at the University of Cambridge. Associate Professor. I am interested in
  4. Complete absorption of topologically protected waves | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/baardink-2021/
    12 Feb 2024: Search. Complete absorption of topologically protected waves. Guido Baardink, Gino Cassella, Luke Neville, P.A. Milewski, Anton Souslov. October 2020. Abstract. Chiral edge states can transmit energy along imperfect interfaces in a topologically
  5. Geometry for mechanics | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-2019623/
    12 Feb 2024: Search. Geometry for mechanics. Anton Souslov, V. Vitelli. July 2019. Abstract. The mechanics of many materials can be modelled by a network of balls connected by springs. A bottom-up approach based on differential geometry now captures changes in
  6. Odd elasticity | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/scheibner-2020/
    12 Feb 2024: Search. Odd elasticity. Colin Scheibner, Anton Souslov, D. Banerjee, Piotr Surowka, William T. M. Irvine, V. Vitelli. March 2020. Abstract. A passive solid cannot do work on its surroundings through any quasistatic cycle of deformations. This
  7. Phonons and elasticity in critically coordinated lattices | Souslov…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/lubensky-2015/
    12 Feb 2024: Search. Phonons and elasticity in critically coordinated lattices. T.C. Lubensky, C.L. Kane, X. Mao, Anton Souslov, K. Sun. January 2015. Abstract. Much of our understanding of vibrational excitations and elasticity is based upon analysis of frames
  8. Surface phonons, elastic response, and conformal invariance in…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/sun-201212369/
    12 Feb 2024: Search. Surface phonons, elastic response, and conformal invariance in twisted kagome lattices. K. Sun, Anton Souslov, X. Mao, T.C. Lubensky. January 2012. Abstract. Model lattices consisting of balls connected by central-force springs provide much
  9. Buckled colloidal monolayers connect geometric frustration in soft…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/shokef-20136565/
    12 Feb 2024: Search. Buckled colloidal monolayers connect geometric frustration in soft and hard matter. Y. Shokef, Y. Han, Anton Souslov, A.G. Yodh, T.C. Lubensky. January 2013. Abstract. Buckled monolayers of diameter-tunable microgel spheres constitute a
  10. Sonic Landau Levels and Synthetic Gauge Fields in Mechanical…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/abbaszadeh-2017/
    12 Feb 2024: Search. Sonic Landau Levels and Synthetic Gauge Fields in Mechanical Metamaterials. H. Abbaszadeh, Anton Souslov, J. Paulose, H. Schomerus, V. Vitelli. January 2017. Abstract. Mechanical strain can lead to a synthetic gauge field that controls the
  11. Order by disorder in the antiferromagnetic Ising model on an elastic…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/shokef-201111804/
    12 Feb 2024: Search. Order by disorder in the antiferromagnetic Ising model on an elastic triangular lattice. Y. Shokef, Anton Souslov, T.C. Lubensky. January 2011. Abstract. Geometrically frustrated materials have a ground-state degeneracy that may be lifted by
  12. Jamie Mclauchlan | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/author/jamie-mclauchlan/
    12 Feb 2024: Search. Jamie Mclauchlan. PhD Student. University of Bath. Jamie started as a PhD student at Bath in September 2021 through the CDT in Aerosol Science. He moved to Bristol and Bath from Edinburgh, where he finished his Master’s degree in
  13. Hydrodynamic correlation functions of chiral active fluids | Souslov…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2005.00621/
    12 Feb 2024: Search. Hydrodynamic correlation functions of chiral active fluids. D. Banerjee, Anton Souslov, V. Vitelli. April 2022. Abstract. The success of spectroscopy to characterize equilibrium fluids, for example the heat-capacity ratio, suggests a
  14. Optimal power and efficiency of odd engines | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2109.10603/
    12 Feb 2024: Search. Optimal power and efficiency of odd engines. E. Fodor, Anton Souslov. December 2021. Abstract. Odd materials feature antisymmetric response to perturbations. This anomalous property can stem from the nonequilibrium activity of their
  15. Topological active matter | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2010.00364/
    12 Feb 2024: Search. Topological active matter. S. Shankar, Anton Souslov, M.J. Bowick, M.C. Marchetti, V. Vitelli. May 2022. Abstract. In active matter systems, individual constituents convert energy into non-conservative forces or motion at the microscale,
  16. Single-shot measurement of photonic topological invariant | Souslov…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2305.03630/
    12 Feb 2024: Search. Single-shot measurement of photonic topological invariant. Nathan Roberts, Guido Baardink, Anton Souslov, Peter J. Mosley. May 2023. Abstract. Topological design enables physicists to engineer robustness into a system. When connected to a
  17. Flocking from a quantum analogy: Spin-orbit coupling in an active…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/loewe-2018/
    12 Feb 2024: Search. Flocking from a quantum analogy: Spin-orbit coupling in an active fluid. B. Loewe, Anton Souslov, P.M. Goldbart. January 2018. Abstract. Systems composed of strongly interacting self-propelled particles can form a spontaneously flowing polar
  18. Extreme thermodynamics with polymer gel tori: Harnessing…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/chang-2018/
    12 Feb 2024: Search. Extreme thermodynamics with polymer gel tori: Harnessing thermodynamic instabilities to induce large-scale deformations. Y.-W. Chang, M.S. Dimitriyev, Anton Souslov, S.V. Nikolov, S.M. Marquez, A. Alexeev, P.M. Goldbart, A.
  19. Modeling Leidenfrost Levitation of Soft Elastic Solids | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2207.02769/
    12 Feb 2024: Search. Modeling Leidenfrost Levitation of Soft Elastic Solids. Jack Binysh, Indrajit Chakraborty, Mykyta V. Chubynsky, Vicente Luis Diaz Melian, Scott R. Waitukaitis, James E. Sprittles, Anton Souslov. October 2023. Abstract. The elastic
  20. Topological Protection Can Arise from Thermal Fluctuations and…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/pedro-2019/
    12 Feb 2024: Search. Topological Protection Can Arise from Thermal Fluctuations and Interactions. R.P. Pedro, J. Paulose, Anton Souslov, M. Dresselhaus, V. Vitelli. January 2019. Abstract. Topological quantum and classical materials can exhibit robust properties
  21. Cluster formation by acoustic forces and active fluctuations in…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/lim-2019460/
    12 Feb 2024: Search. Cluster formation by acoustic forces and active fluctuations in levitated granular matter. M.X. Lim, Anton Souslov, V. Vitelli, H.M. Jaeger. March 2019. Abstract. Mechanically agitated granular matter often serves as a prototype for

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