We present a field-theoretic renormalization group (RG) analysis of a single flexible, screened polyelectrolyte chain (a Debye-Hückel chain) in a polar solvent. We point out that the Debye-Hückel chain may be mapped onto a local field theory which has the same fixed point as a generalised $n\rightarrow1$ Potts model. Systematic analysis of the field theory shows that the system is one with two interplaying length scales requiring the calculation of scaling functions as well as exponents to fully describe its physical behaviour. To illustrate this, we solve the RG equation and explicitly calculate the exponents and the mean end-to-end length of the chain
We perform extensive molecular dynamics simulations of a charged polymer in a good solvent in the re...
We study the effect of electrostatic interactions on the distribution function of the end-to-end dis...
A variational approach is considered to calculate the free energy and the conformational properties...
We present a field-theoretic Renormalization Group (RG) analysis of the statistical mechanics of lo...
We consider the thermodynamics of a uniformly charged polyelectrolyte with harmonic bonds. For such ...
Over the years, there has been much debate regarding the conformational behavior of flexible polyele...
Variational methods are applied to a single polyelectrolyte chain. The polymer is modeled as a Gaus...
We review recent results of the field theoretical renormalization group analysis on the scaling prop...
Using a recently developed renormalized Gaussian fluctuation (RGF) field theory that self-consistent...
We present a field-theoretic renormalization group analysis of a polymer chain immersed in a binary ...
We analyze the effects of finite segment size and weak chain stiffness on the properties of polymer...
The importance of swelling corrections in the field-theoretic model describing an isolated, unscreen...
We present simulations of a basic model of weakly charged polyelectrolyte chains of variable intrins...
Previous theories of dilute polymer solutions have failed to distinguish clearly between two very di...
We reconsider the electrostatic contribution to the persistence length, $\ell_{\rm e}$, of a single,...
We perform extensive molecular dynamics simulations of a charged polymer in a good solvent in the re...
We study the effect of electrostatic interactions on the distribution function of the end-to-end dis...
A variational approach is considered to calculate the free energy and the conformational properties...
We present a field-theoretic Renormalization Group (RG) analysis of the statistical mechanics of lo...
We consider the thermodynamics of a uniformly charged polyelectrolyte with harmonic bonds. For such ...
Over the years, there has been much debate regarding the conformational behavior of flexible polyele...
Variational methods are applied to a single polyelectrolyte chain. The polymer is modeled as a Gaus...
We review recent results of the field theoretical renormalization group analysis on the scaling prop...
Using a recently developed renormalized Gaussian fluctuation (RGF) field theory that self-consistent...
We present a field-theoretic renormalization group analysis of a polymer chain immersed in a binary ...
We analyze the effects of finite segment size and weak chain stiffness on the properties of polymer...
The importance of swelling corrections in the field-theoretic model describing an isolated, unscreen...
We present simulations of a basic model of weakly charged polyelectrolyte chains of variable intrins...
Previous theories of dilute polymer solutions have failed to distinguish clearly between two very di...
We reconsider the electrostatic contribution to the persistence length, $\ell_{\rm e}$, of a single,...
We perform extensive molecular dynamics simulations of a charged polymer in a good solvent in the re...
We study the effect of electrostatic interactions on the distribution function of the end-to-end dis...
A variational approach is considered to calculate the free energy and the conformational properties...