activity
20182022
most citedDissipation bounds the amplification of transition rates far from equilibrium

36 citations · 90 across the 4 of their papers we have counts for

collaborators

6 papers

physics.chem-ph2022★ 7 cited

Inferring equilibrium transition rates from nonequilibrium protocols

Benjamin Kuznets-Speck, David T Limmer

We develop a theory for inferring equilibrium transition rates from trajectories driven by a time dependent force using results from stochastic thermodynamics. Applying the Kawasak…

cond-mat.stat-mech2021★ 25 cited

Direct evaluation of rare events in active matter from variational path sampling

Avishek Das, Benjamin Kuznets-Speck, David T. Limmer

Active matter represents a broad class of systems that evolve far from equilibrium due to the local injection of energy. Like their passive analogues, transformations between disti…

cond-mat.stat-mech2021★ 22 cited

Shortcuts in stochastic systems and control of biophysical processes

Efe Ilker, Özenç Güngör, Benjamin Kuznets-Speck +3

The biochemical reaction networks that regulate living systems are all stochastic to varying degrees. The resulting randomness affects biological outcomes at multiple scales, from…

cond-mat.stat-mech2020★ 36 cited

Dissipation bounds the amplification of transition rates far from equilibrium

Benjamin Kuznets-Speck, David T. Limmer

Complex systems can convert energy imparted by nonequilibrium forces to regulate how quickly they transition between long lived states. While such behavior is ubiquitous in natural…

cond-mat.stat-mech2019

Controlling the speed and trajectory of evolution with counterdiabatic driving

Shamreen Iram, Emily Dolson, Joshua Chiel +8

The pace and unpredictability of evolution are critically relevant in a variety of modern challenges: combating drug resistance in pathogens and cancer, understanding how species r…

cs.IT2018

Thermodynamic Properties of Molecular Communication

Andrew W. Eckford, Benjamin Kuznets-Speck, Michael Hinczewski +1

In this paper, we consider the energy cost of communicating using molecular communication. In a simplified scenario, we show that the energy bound in Landauer's principle can be ac…