A case study of thermodynamic bounds for chemical kinetics
arXiv:1804.00859
Abstract
In this chapter, we illustrate recently obtained thermodynamic bounds for a number of enzymatic networks by focusing on simple examples of unicyclic or multi-cyclic networks. We also derive complementary relations which constrain the fluctuations of first-passage times to reach a threshold current.
References in corpus (10)
- Thermodynamic uncertainty relation for biomolecular processes
- Proof of the Finite-Time Thermodynamic Uncertainty Relation for Steady-State Currents
- Cost and Precision of Brownian Clocks
- Entropic bounds on currents in Langevin systems
- Universal Bound on the Fano Factor in Enzyme Kinetics
- Frenetic bounds on the entropy production
- Phase transition in protocols minimizing work fluctuations
- Mapping of uncertainty relations between continuous and discrete time
- Quantifying fluctuations in reversible enzymatic cycles and clocks
- On the motion of kinesin in a viscoelastic medium