Space-like asymptotics of the thermal two-point functions of the XXZ spin-1/2 chain
arXiv:2311.17196 · doi:10.1088/1742-5468/ad267c
Abstract
This work proposes a closed formula for the leading term of the long-distance and large-time asymptotics in a cone of the space-like regime for the transverse dynamical two-point functions of the XXZ spin 1/2 chain at finite temperatures. The result follows from a simple analysis of the thermal form factor series for dynamical correlation functions. The leading asymptotics we obtain are driven by the Bethe Ansatz data associated with the first sub-leading Eigenvalue of the quantum transfer matrix.
21 pages, 2 figures, V2 extended introduction
References in corpus (7)
- Long-distance behavior of temperature correlation functions in the one-dimensional Bose gas
- Exact real-time longitudinal correlation functions of the massive XXZ chain
- Dynamical correlation functions of the XXZ model at finite temperature
- A thermal form factor series for the longitudinal two-point function of the Heisenberg-Ising chain in the antiferromagnetic massive regime
- Spin conductivity of the XXZ chain in the antiferromagnetic massive regime
- Thermal form-factor expansion of the dynamical two-point functions of local operators in integrable quantum chains
- Low-temperature spectrum of the quantum transfer matrix of the XXZ chain in the massless regime