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  2. Brook Salter joins the group | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/news/brook-joins/
    12 Feb 2024: Search. Brook Salter joins the group. 1 May 2023. Welcome Brook! Associate Professor. I am interested in the theory of soft materials. Published with Wowchemy — the free, open source website builder that empowers creators.
  3. Jamie Mclauchlan joins the group | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/news/jamie-joins/
    12 Feb 2024: Search. Jamie Mclauchlan joins the group. 1 Oct 2021. Welcome Jamie! Associate Professor. I am interested in the theory of soft materials. Published with Wowchemy — the free, open source website builder that empowers creators.
  4. Mr Peng

    www.tcm.phy.cam.ac.uk/profiles/bp432/
    12 Mar 2024: About. Research. People. Events. Join us. Impact. Bo Peng. Mr Bo Peng. Fellow of Magdelene College. Office: 537 Mott Bld. Email: bp432@cam.ac.uk. TCM Group, Cavendish Laboratory. 19 JJ Thomson Avenue,. Cambridge, CB3 0HE UK. Research. Quantum
  5. Nathan Roberts | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/author/nathan-roberts/
    12 Feb 2024: Search. Nathan Roberts. PhD Student. University of Bath. Nathan started as a PhD student at Bath in September 2020. He finished his Master’s degree at Bath with a research placement in Japan at NTT. Education. Master's in Physics, 2020. University
  6. Eminent Alumni of TCM

    www.tcm.phy.cam.ac.uk/about/alumni/eminent.html
    10 Jun 2024: About. Research. People. Events. Join us. Impact. Eminent Alumni. Image Trinity Hall. It would be invidious for us to attempt to compare the scientific merit of the output of our alumni. Hence this page records merely those of our alumni who have
  7. Guido Baardink | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/author/guido-baardink/
    12 Feb 2024: Search. Guido Baardink. PhD Student. University of Bath. Guido completed his PhD thesis at Bath in 2023, titled Design Principles for Active Solids. Before that, Guido obtained Master’s degrees in Theoretical Physics from Leiden University,
  8. 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
  9. Chiral Active Metamaterials | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/talk/natal/
    12 Feb 2024: Search. Chiral Active Metamaterials. Date. 31 Aug 2017 10:00. Event. Workshop “Out of Equilibrium Dynamics in Soft and Condensed Matter”. Location. International Institute of Physics (IIP), Natal, Brazil. Associate Professor. I am interested in
  10. Between materials and robots | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/talk/pintofscience/
    12 Feb 2024: Search. Between materials and robots. Date. 17 May 2021 18:00. Event. Creating and detecting life with tech. Location. Pint of Science UK (YouTube). Associate Professor. I am interested in the theory of soft materials. Published with Wowchemy —
  11. Nigel Cooper

    www.tcm.phy.cam.ac.uk/~nrc25/projects/open.html
    7 Mar 2024: Toplogy Out of Equilibrium. Publications. Fate of the Mollow triplet in strongly-coupled atomic arrays. Orazio Scarlatella, Nigel R. Cooper. preprint (2024) [arXiv:2403.03679]. Topological phase transitions at finite temperature. P. Molignini and N.
  12. Publications | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/
    12 Feb 2024: New Journal of Physics. Y.-W. Chang, M.S. Dimitriyev, Anton Souslov, S.V.
  13. Active Fluids as Topological Metamaterials | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/talk/gatech/
    12 Feb 2024: Search. Active Fluids as Topological Metamaterials. Date. 15 May 2018 00:00. Event. Workshop “Topological Protection in Messy Matter”. Location. Georgia Institute of Technology, Atlanta, GA, USA. Associate Professor. I am interested in the
  14. Robert-Jan Slager

    www.tcm.phy.cam.ac.uk/~rjs269/index_Rh.html
    7 Feb 2024: Our study unveils a new regime of topological phases where multi-gap topology and non-Abelian charges of band nodes play a crucial role in understanding semimetals with inter-connected multiple ... These phases are exclusively mapped out in this analysis
  15. SouslovLab YouTube Channel has been launched! | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/news/youtube-channel/
    12 Feb 2024: Search. SouslovLab YouTube Channel has been launched! 27 Oct 2020. Here is the link, which includes the Supplementary Movies for our latest preprints:Associate Professor. I am interested in the theory of soft materials. Published with Wowchemy —
  16. Oscillatory chiral flows in confined active fluids with obstacles |…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/zhang-2020/
    12 Feb 2024: Search. Oscillatory chiral flows in confined active fluids with obstacles. B. Zhang, Benjamin Hilton, Christopher Short, Anton Souslov, A. Snezhko. November 2020. Abstract. An active colloidal fluid comprised of self-propelled spinning particles
  17. Coupling the Leidenfrost effect and elastic deformations to power…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/waitukaitis-20171095/
    12 Feb 2024: Here we introduce a new phenomenon that occurs with vaporizable soft solids - the elastic Leidenfrost effect. ... Our findings suggest a new strategy for injecting mechanical energy into a widely used class of soft materials, with potential relevance to
  18. Topological Protection Can Arise from Thermal Fluctuations and…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/pedro-2019/
    12 Feb 2024: Our work points to a new class of classical topological phenomena in which the topological signature manifests itself in a structural property observed at finite temperature rather than a transport measurement.
  19. 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
  20. Cluster formation by acoustic forces and active fluctuations in…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/lim-2019460/
    12 Feb 2024: These results open up new possibilities for non-invasively manipulating macroscopic particles, tuning their interactions and directing their assembly.
  21. 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
  22. 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
  23. 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
  24. 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
  25. Odd living matter defies golden rule of mechanics | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/binysh-nature-2022/
    12 Feb 2024: Search. Odd living matter defies golden rule of mechanics. Jack Binysh, Anton Souslov. July 2022. Abstract. Self-assembling ‘crystals’ of starfish embryos exhibit a curious behaviour termed odd elasticity, which seemingly violates Newton’s
  26. Elasticity and response in nearly isostatic periodic lattices |…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-2009/
    12 Feb 2024: Search. Elasticity and response in nearly isostatic periodic lattices. Anton Souslov, A.J. Liu, T.C. Lubensky. January 2009. Abstract. The square and kagome lattices with nearest-neighbor springs of spring constant k are isostatic with a number of
  27. Emergent tilt order in Dirac polymer liquids | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-2015/
    12 Feb 2024: Search. Emergent tilt order in Dirac polymer liquids. Anton Souslov, B. Loewe, P.M. Goldbart. January 2015. Abstract. We study a liquid of zigzagging two-dimensional directed polymers with bending rigidity, i.e., polymers whose conformations follow
  28. Active solids sync up | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/binysh-natphys-2022/
    12 Feb 2024: Search. Active solids sync up. Jack Binysh, Anton Souslov. August 2022. Abstract. An active solid composed of confined robots is reported. Through elastic interactions, the robots sync up to create novel states of coherent motion. Publication.
  29. Journal Club

    www.tcm.phy.cam.ac.uk/events/journal_club.html
    10 May 2024: Fabian Grusdt, Eugene Demler - New theoretical approaches to Bose polarons6th April): Florian Marquardt et.
  30. Topological Waves in Fluids with Odd Viscosity | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-2019/
    12 Feb 2024: Search. Topological Waves in Fluids with Odd Viscosity. Anton Souslov, K. Dasbiswas, M. Fruchart, S. Vaikuntanathan, V. Vitelli. March 2019. Abstract. Fluids in which both time reversal and parity are broken can display a dissipationless viscosity
  31. Organization of strongly interacting directed polymer liquids in the…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-2013/
    12 Feb 2024: Search. Organization of strongly interacting directed polymer liquids in the presence of stringent constraints. Anton Souslov, D.Z. Rocklin, P.M. Goldbart. January 2013. Abstract. The impact of impenetrable obstacles on the energetics and
  32. 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
  33. 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
  34. 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
  35. Anisotropic odd viscosity via a time-modulated drive | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-2020/
    12 Feb 2024: Search. Anisotropic odd viscosity via a time-modulated drive. Anton Souslov, Andrey Gromov, V. Vitelli. May 2020. Abstract. At equilibrium, the structure and response of ordered phases are typically determined by the spontaneous breaking of spatial
  36. Anton Souslov | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/author/anton-souslov/
    12 Feb 2024: Search. Anton Souslov. Associate Professor. I am an Associate Professor (in the Cavendish Laboratory, Department of Physics at the University of Cambridge) working on the theory of soft materials, including mechanical metamaterials, active matter,
  37. 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
  38. 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
  39. Bacterial filamentation drives colony chirality | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2021.03.11.434908/
    12 Feb 2024: Search. Bacterial filamentation drives colony chirality. A. Aranda-Diaz, C. Rodrigues, A. Grote, J. Sun, C. Schreck, O. Hallatschek, Anton Souslov, W. Mobius, K.C. Huang. November 2021. Abstract. Chirality is ubiquitous in nature, with consequences
  40. Topological sound in active-liquid metamaterials | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-20171091/
    12 Feb 2024: Search. Topological sound in active-liquid metamaterials. Anton Souslov, B.C. Van Zuiden, D. Bartolo, V. Vitelli. January 2017. Abstract. Liquids composed of self-propelled particles have been experimentally realized using molecular, colloidal or
  41. 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
  42. Beads on a string: Structure of bound aggregates of globular…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/souslov-20158092/
    12 Feb 2024: Search. Beads on a string: Structure of bound aggregates of globular particles and long polymer chains. Anton Souslov, J.E. Curtis, P.M. Goldbart. January 2015. Abstract. Macroscopic properties of suspensions, such as those composed of globular
  43. Localizing softness and stress along loops in 3D topological…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/baardink-2018489/
    12 Feb 2024: Search. Localizing softness and stress along loops in 3D topological metamaterials. Guido Baardink, Anton Souslov, J. Paulose, V. Vitelli. January 2018. Abstract. Topological states can be used to control the mechanical properties of a material
  44. Impact of single-particle compressibility on the fluid-solid phase…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/pelaez-fernandez-2015/
    12 Feb 2024: Search. Impact of single-particle compressibility on the fluid-solid phase transition for ionic microgel suspensions. M. Pelaez-Fernandez, Anton Souslov, L.A. Lyon, P.M. Goldbart, A. Fernández-Nieves. January 2015. Abstract. We study ionic microgel
  45. Graduate teaching

    www.tcm.phy.cam.ac.uk/impact/teaching.html
    23 May 2024: About. Research. People. Events. Join us. Impact. Graduate teaching. Research students in TCM are able to take advantage of a wide range of courses offered by the University. Final year undergraduate (Part III) courses in both Physics and
  46. Publications | Monserrat Lab

    www.tcm.phy.cam.ac.uk/~bm418/publications.html
    8 May 2024: Publications. 98. P. Ghosh, A.M. Alvertis, R. Chowdhury, P. Murto, A.J. Gillett, S. Dong, A.J. Sneyd, H.-H. Cho, E.W. Evans, B. Monserrat, F. Li, C. Schnedermann, H. Bronstein, R.H. Friend, and A. Rao. Decoupling excitons from high-frequency
  47. Alumni of TCM Group

    www.tcm.phy.cam.ac.uk/about/alumni/
    1 Apr 2024: About. Research. People. Events. Join us. Impact. Alumni. Whilst many people try harder to avoid celebrating birthdays the older they become, TCM is not like this at all. TCM enjoys keeping in touch with its alumni, both those who continue in
  48. Gareth Conduit's presentations

    www.tcm.phy.cam.ac.uk/~gjc29/presentations.html
    15 Mar 2024: DFT design of new materials. Samsung GRO launch day, University of Cambridge, UK. ... May 2024. Panel discussion on Future of Materials Informatics. IOM3 Materials Informatics Network: towards a new Technical Community, UK.
  49. Nigel Cooper Publications

    www.tcm.phy.cam.ac.uk/~nrc25/publications.html
    24 Mar 2024: N. R. Cooper. Chapter 10 in Fractional Quantum Hall Effects: New Developments, editors B.I. ... Gunnar Möller and Nigel R. Cooper. New J. Phys. 20, 073025 (2018) [Topology of one dimensional quantum systems out of equilibrium.
  50. International collaboration lays the foundation for future AI for ...

    www.tcm.phy.cam.ac.uk/~gjc29/coverage/OPTIMADE_24.pdf
    24 Jun 2024: International collaboration lays the foundation for future AI for materials. Artificial intelligence (AI) is accelerating the development of new materials. ... New technologies in areas such as energy and sustainability involving for example batteries,
  51. Research Highlights

    www.tcm.phy.cam.ac.uk/highlights/240314J4A_bp432/
    14 Mar 2024: About. Research. People. Events. Join us. Impact. Research Highlights. Photon, electron, spin, topology.Gunnar F. Lange, Daniel Bennett, Kang Wang, Robert-Jan Slager and Bartomeu Monserrat. Ultrathin bismuth is a promising material for quantum

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