Molecular hydrodynamic theory of non-Markovian collective orientational relaxation in dense dipolar liquids
- 1 October 1991
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 95 (7) , 5289-5299
- https://doi.org/10.1063/1.461830
Abstract
A microscopic study of the non‐Markovian (or memory) effects on the collective orientational relaxation in a dense dipolar liquid is carried out by using an extended hydrodynamic approach which provides a reliable description of the dynamical processes occuring at the molecular length scales. Detailed calculations of the wave‐vector dependent orientational correlation functions are presented. The memory effects are found to play an important role; the non‐Markovian results differ considerably from that of the Markovian theory. In particular, a slow long‐time decay of the longitudinal orientational correlation function is observed for dense liquids which becomes weaker in the presence of a sizeable translational contribution to the collective orientational relaxation. This slow decay can be attributed to the intermolecular correlations at the molecular length scales. The longitudinal component of the orientational correlation function becomes oscillatory in the underdamped limit of momenta relaxations and the frequency dependence of the friction reduce the frictional resistance on the collective excitations (commonly known as dipolarons) to make them long lived. The theory predicts that these dipolarons can, therefore, be important in chemical relaxation processes, in contradiction to the claims of some earlier theoretical studies.Keywords
This publication has 39 references indexed in Scilit:
- Solvent dynamical effects in electron transfer: comparisons of self-exchange kinetics for cobaltocenium-cobaltocene and related redox couples with theoretical predictionsThe Journal of Physical Chemistry, 1988
- Diffusion in disordered mediaAdvances in Physics, 1987
- Mode-coupling theory of the large long-time tails in the stress-tensor autocorrelation functionPhysical Review A, 1986
- Short-wavelength collective modes and generalized hydrodynamic equations for hard-sphere particlesPhysical Review A, 1985
- Kinetic Ising model for polymer dynamics. II. Generalized transition rates and the Williams–Watts nonexponential functionThe Journal of Chemical Physics, 1985
- Experimental detection of collective modes In a polar liquid: application to the case of the solvated electron in H2O and NH3Canadian Journal of Chemistry, 1977
- Dielectric relaxation and dynamic susceptibility of a one-dimensional model for perpendicular-dipole polymersThe Journal of Chemical Physics, 1975
- Critical dynamics of ferromagnets indimensions: General discussion and detailed calculationPhysical Review B, 1975
- Theory of Dielectric Relaxation in Polar LiquidsThe Journal of Chemical Physics, 1970
- Liquid dynamics and inelastic scattering of neutronsPhysica, 1959