Multicellular self-organization of P. aeruginosa due to interactions with secreted trails

Physical Review Letters American Physical Society (2016)

Authors:

Anatolij Gelimson, Kun Zhao, Calvin K Lee, W Till Kranz, Gerard CL Wong, Ramin Golestanian

Abstract:

Guided movement in response to slowly diffusing polymeric trails provides a unique mechanism for self-organization of some microorganisms. To elucidate how this signaling route leads to microcolony formation, we experimentally probe the trajectory and orientation of Pseudomonas aeruginosa that propel themselves on a surface using type IV pili motility appendages, which preferentially attach to deposited exopolysaccharides. We construct a stochastic model by analyzing single-bacterium trajectories, and show that the resulting theoretical prediction for the many-body behavior of the bacteria is in quantitative agreement with our experimental characterization of how cells explore the surface via a power law strategy.

Eigenstate phase transitions and the emergence of universal dynamics in highly excited states

(2016)

Authors:

SA Parameswaran, Andrew C Potter, Romain Vasseur

On Truncated Generalized Gibbs Ensembles in the Ising Field Theory

(2016)

Authors:

FHL Essler, G Mussardo, M Panfil

Current fluctuations in nanopores: The effects of electrostatic and hydrodynamic interactions

The European Physical Journal Special Topics Springer Nature 225:8-9 (2016) 1583-1594

Authors:

Mira Zorkot, Ramin Golestanian, Douwe Jan Bonthuis

Exact Bethe ansatz spectrum of a tight-binding chain with dephasing noise

Physical Review Letters American Physical Society 117:13 (2016) 137202

Authors:

Mariya V Medvedyeva, Fabian Essler, Toma啪 Prosen

Abstract:

We construct an exact map between a tight-binding model on any bipartite lattice in the presence of dephasing noise and a Hubbard model with imaginary interaction strength. In one dimension, the exact many-body Liouvillian spectrum can be obtained by application of the Bethe ansatz method. We find that both the nonequilibrium steady state and the leading decay modes describing the relaxation at late times are related to the 畏-pairing symmetry of the Hubbard model. We show that there is a remarkable relation between the time evolution of an arbitrary k-point correlation function in the dissipative system and k-particle states of the corresponding Hubbard model.