vix.ing · top · new · best · stats · spec

The two-particle density matrix of a Luttinger liquid

2026/07/15 by Harini Radhakrishnan, Matthias Thamm, Hatem Barghathi +2
#cond-mat.str-el

paper · pdf

Abstract

Two-particle coherence is the first level of the reduced-density-matrix hierarchy that contains correlations inaccessible to single-particle observables, yet analytic two-particle density matrices are rare even in one dimension. We derive a closed, finite-size expression for the equal-time two-particle reduced density matrix of spinless fermions in a Tomonaga-Luttinger liquid using constructive bosonization with an explicit ultraviolet cutoff. In addition to the familiar Luttinger parameter K-dependent exponent γ2=(K+K-1-2)/2 which governs the spatial decay of matrix elements, the result exposes a second exponent, λ=(K-1-K)/2, which encodes correlations between opposite chiralities and controls the off-diagonal structure. The diagonal limit of the two-particle reduced density matrix yields density correlations and the static structure factor, while its coherences resolve algebraic 2kF charge-density-wave correlations for repulsion and odd-parity p-wave pairing correlations for attraction. After fixing the cutoff from the one-particle density matrix, the analytic result quantitatively reproduces density matrix renormalization group calculations of the interacting J-V chain within the Luttinger liquid regime. The result connects universal Luttinger liquid scaling with observables in finite microscopic systems.

Citations

Related