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  2. Theoretical Physics II

    www.tcm.phy.cam.ac.uk/~rjs269/TP2/TP2y2024.pdf
    22 Jan 2024: At the same time, physi-cists were forced – sometimes unwillingly – to adopt myriad new techniquesand mathematical ideas. ... In this new frame thesystem precesses about a fixed axis (HR, 0, H0 h̄ω) at the Rabi frequency.
  3. Template for Electronic Submission to ACS Journals

    www.tcm.phy.cam.ac.uk/~gjc29/papers/WhiteheadStricklandConduitBorrelMucsBaskerville-Abraham23.pdf
    28 Nov 2023: extrapolating new data for regression problems (continuous variables), however for the sake of. ... this new family of models. When evaluating imputation modeling against the five principles.
  4. Research Highlights

    www.tcm.phy.cam.ac.uk/highlights/230708BtK_ms2855/
    8 Jul 2023: This study opens new doors for optimizing and comprehending the behavior of glassy thermal insulators and promises to drive advancements across various industries.
  5. 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.
  6. 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
  7. Soft topological modes protected by symmetry in rigid mechanical…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/kedia-2021/
    12 Feb 2024: Search. Soft topological modes protected by symmetry in rigid mechanical metamaterials. H. Kedia, Anton Souslov, D.Z. Rocklin. February 2021. Abstract. Topological mechanics can realize soft modes in mechanical metamaterials in which the number of
  8. 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
  9. 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
  10. Mechanical instability at finite temperature | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/mao-2015/
    12 Feb 2024: Search. Mechanical instability at finite temperature. X. Mao, Anton Souslov, C.I. Mendoza, T.C. Lubensky. January 2015. Abstract. Many physical systems including lattices near structural phase transitions, glasses, jammed solids and biopolymer gels
  11. 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
  12. 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
  13. Odd Cosserat elasticity in active materials | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2210.13606/
    12 Feb 2024: Search. Odd Cosserat elasticity in active materials. Piotr Surowka, Anton Souslov, Frank Julicher, Debarghya Banerjee. October 2022. Abstract. Stress-strain constitutive relations in solids with an internal angular degree of freedom can be modelled
  14. Topological supermodes in photonic crystal fibre | Souslov Lab

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2201.10584/
    12 Feb 2024: Search. Topological supermodes in photonic crystal fibre. Nathan Roberts, Guido Baardink, Josh Nunn, Peter J. Mosley, Anton Souslov. December 2022. Abstract. Topological states enable robust transport within disorder-rich media through integer
  15. Topological edge states in equidistant arrays of lithium niobate…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/gorbach-2023/
    12 Feb 2024: Search. Topological edge states in equidistant arrays of lithium niobate nano-waveguides. Andrey V. Gorbach, Jesper Beer, Anton Souslov. April 2023. Abstract. We report that equidistant 1D arrays of thin-film lithium niobate nano-waveguides
  16. Scalable 3D printing for topological mechanical metamaterials |…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2206.11837/
    12 Feb 2024: Search. Scalable 3D printing for topological mechanical metamaterials. Achilles Bergne, Guido Baardink, Evripides G Loukaides, Anton Souslov. December 2022. Abstract. Mechanical metamaterials are structures designed to exhibit an exotic response,
  17. Mechanical properties of acoustically levitated granular rafts |…

    https://www.tcm.phy.cam.ac.uk/~as3546/publication/2106.09765/
    12 Feb 2024: Search. Mechanical properties of acoustically levitated granular rafts. M.X. Lim, B. VanSaders, Anton Souslov, H.M. Jaeger. April 2022. Abstract. We investigate a model system for the rotational dynamics of inertial many-particle clustering, in
  18. 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
  19. Biological and Soft Matter

    www.tcm.phy.cam.ac.uk/research/bio_soft.html
    29 Oct 2023: Biology, which will lead to new conceptual insights into the molecular regulation of basic biological processes. ... etc.) can lead to the emergence of new 'collective phenomena', defined by few composite variables and macroscopic length scales.
  20. Gunnar Lange

    www.tcm.phy.cam.ac.uk/profiles/gfl25/
    4 Jul 2023: About. Research. People. Events. Join us. Impact. Gunnar Lange. Gunnar Lange. Member of Churchill College. PhD student in Dr Monserrat's group. Office: 540 Mott Bld. Email: gfl25 @ cam.ac.uk. TCM Group, Cavendish Laboratory. 19 JJ Thomson Avenue,
  21. 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

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