activity
20242026
most citedOdd elasticity in disordered chiral active materials

1 citations · 1 across the 2 of their papers we have counts for

collaborators

6 papers

cond-mat.soft2026

Elastodynamics from Eulerian Poisson-bracket formalism: application to chiral odd solids

Cheng-Tai Lee, Tomer Markovich

The Poisson-bracket (PB) formalism is widely used to derive dynamics of coarse-grained (CG) fields to capture large-scale physics, extending the role of PBs in classical particle m…

cond-mat.soft20261 cited

Odd elasticity in disordered chiral active materials

Cheng-Tai Lee, Tom C. Lubensky, Tomer Markovich

Chiral active materials are abundant in nature, including the cytoskeleton with attached motor proteins, rotary clusters of bacterial flagella, and self-spinning starfish embryos.…

cond-mat.soft2026

Non-Hermitian chiral surface waves in disordered odd solids

Cheng-Tai Lee, Tomer Markovich

Chiral surface waves are surface-localized modes that propagate unidirectionally along a boundary, enabling directed transport and minimal back-scattering. While first identified i…

cond-mat.stat-mech2025

Control of active field theories at minimal dissipation

Artur Soriani, Elsen Tjhung, Étienne Fodor +1

Advances in experimental techniques enable the precise manipulation of a large variety of active systems, which constantly dissipate energy to sustain nonequilibrium phenomena with…

cond-mat.soft2024

Chiral active fluids: what can we learn from the total momentum?

Tomer Markovich, Tom C. Lubensky

Chiral active materials are those that break both time-reversal symmetry and parity microscopically, which results in average rotation of the material's complex molecules around th…

cond-mat.stat-mech2024

Second Law of Thermodynamics without Einstein Relation

Benjamin Sorkin, Haim Diamant, Gil Ariel +1

Materials that are constantly driven out of thermodynamic equilibrium, such as active and living systems, typically violate the Einstein relation. This may arise from active contri…