Computational and theoretical physics group studying assembly and dynamical organization in soft condensed matter systems at Brandeis University

Waltham, MA
🚨Published 🚨 : Newton 2025 : doi.org/10.1016/j.newton.202… : @LayneFrechette demonstrates how active noise can induce dynamic clustering of colloidal particles that has tunable characteristics. Check it out ! #ActiveSelfAssembly #BrandeisMRSEC #ActiveMatter
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⭐️Featured⭐️: [Pub PRX Dec2024] : Dr. Anthony Trubiano presents a Markov State Model approach to doing long duration simulations to make more accurate predictions of assembly thermodynamics while addressing kinetics. Check it out : doi.org/10.1103/PhysRevX.14.… #MultiMSM #BrandeisMRSEC
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🚨 Publication🚨 : ACS Nano : @LayneFrechette and @naren48 use Langevin dynamics simulations to demonstrate how self-assembly of empty #ViralCapsidAssembly is modulated by liquid compartments formed by #PhaseSeparation . Check it out: pubs.acs.org/doi/10.1021/acs… #BrandeisMRSEC
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New Publication 🚨 : @LayneFrechette shows how active matter, which consumes energy to create persistent and directed motion, can be harnessed to create dynamic assemblies with tunable sizes, shapes, and motion. Check it out : arxiv.org/abs/2410.05555 @BrandeisMRSEC
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Now published in Newton ( Cell Press ) : doi.org/10.1016/j.newton.202…
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New Publication 🚨 : Saptorshi Ghosh shows how to use optimal control theory to control structure, dynamics and function of active materials using light signals. Check it out :doi.org/10.1063/5.0244046 [doi.org] @BrandeisMRSEC
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New Publication 🚨 : Saptorshi Ghosh shows how to use optimal control theory to control structure, dynamics and function of active materials using light signals. Check it out : urldefense.com/v3/__doi.org/…$ @BrandeisMRSEC
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🚨Check out our new account on Blue sky : bsky.app/profile/haganlab.bs…. We will also be posting and doing outreach on the Blue sky platform going forward. Stay tuned !
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New Publication 🚨 : Tyukodi Botond explores how to choose design principles for synthesizing closed assemblies with the lowest complexity and highest degree of symmetry to enable high yielding but fast assembly of target structures. Check it out: arxiv.org/abs/2411.03720
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Hagan Lab retweeted
Liquid crystals, Klein bottles and dislocations at this week's @geompack webinar from Randy Kamien (Penn) on "The topological origin of the Peierls-Nabarro barrier" Wed. (Apr. 6) 4:30 PM London time geompack.com/6th-april-2022-…
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"Data-driven discovery of active nematic hydrodynamics", recent preprint from our lab by @joshiChaitanya3 , in collaboration with @dogiclab . @BrandeisMRSEC @BrandeisLS @BrandeisScience
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Active nematics confined in vesicles? Join Sarvesh talk at #apsmarch Chicago today to learn more about his research in collaboration with @mattsepeterson and @TU_Muenchen @NorthwesternU @UCSBPhysics. Tuesday, March 15, 2022, 5:36PM - 5:48PM meetings.aps.org/Meeting/MAR…
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Our recent publication on activity-driven vesicle shape transformations by @mattsepeterson was featured on the @NatureComms Editors' Highlights for Applied Physics and Mathematics! nature.com/articles/s41467-0… See other featured papers here: nature.com/collections/hjhbg…
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Hagan Lab retweeted
Then on Friday, @ylleksseG will present our joint work with @TheSquishyLab on modeling the transition from localized to extended deposition in hard sphere packings, which may be understood in terms of the classical sandpile model. meetings.aps.org/Meeting/MAR…
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