- By:
- Wang, Yangyang ; Carrillo, Jan Michael Y
- Journal Name:
- The Journal of Chemical Physics
- Page Number:
- 206101
- Volume:
- 164
- Issue Number:
- 20
- Publication Date:
- September 15, 2026
- View DOI Listing:
- https://doi.org/10.1063/5.0332457
Abstract
We point out that, under the incompressibility constraint, the two-time pressure-fluctuation correlator of polymeric liquids becomes an isotropic, symmetric, and pair-index-traceless fourth-rank tensor. As a consequence, the self- and cross correlations of normal pressure fluctuations are strictly proportional to the shear pressure correlation, with universal prefactors of 4/3 and −2/3, respectively, for equilibrium dynamics in the long-time limit. By contrast, this symmetry structure is violated in a broad class of polymer models, including the Rouse and slip-link models, which predict incorrect relative weights between normal pressure-fluctuation correlations and shear pressure correlation. This observation suggests that the pressure tensor generated by these models must be projected onto the traceless symmetric subspace to recover hydrodynamically consistent behavior.