English

The Luttinger liquid kink

Strongly Correlated Electrons 2007-06-13 v2

Abstract

Although the Tomonaga-Luttinger liquid exhibits spin-charge separation and the electron is not an elementary excitation of the system, nevertheless an effective electronic dispersion may be defined by the frequency-dependent peak in the momentum distribution curve (MDC). The MDC is defined by considering the single hole spectral function A<(k,ω)A^<(\vec{k},\omega) as a function of k\vec{k} at a fixed frequency ω\omega. We show the existence of a \emph{kink} in this dispersion for the spin-rotationally invariant Tomonaga-Luttinger liquid at finite temperature. In the repulsive regime where the charge velocity vcv_{c} is greater than the spin velocity vsv_{s}, the low frequency effective electronic dispersion is linear in k\vec{k} and follows a velocity vlv_l between the spin and charge velocities, vs<vl<vcv_s < v_l < v_c. The high frequency part (which is also linear in k\vec{k}) disperses with the charge velocity vcv_c. The energy scale of the crossover between the two velocities defines a kink, EkinkE_{\rm kink}. In addition, the high energy dispersion extrapolates to the Fermi energy at a wavevector kexkFk_{ex} \ne k_F which is shifted from the Fermi wavevector. The presence of such a kink is measurable with, {\em e.g.}, angle-resolved photoemission experiments, and may be used to test for the presence of Luttinger liquid behavior in systems in which the separate contributions from spin and charge to the MDC are not discernible due to strong interactions or low experimental resolution.

Cite

@article{arxiv.cond-mat/0703101,
  title  = {The Luttinger liquid kink},
  author = {Trinanjan Datta and E. W. Carlson and Jiangping Hu},
  journal= {arXiv preprint arXiv:cond-mat/0703101},
  year   = {2007}
}

Comments

New draft, 5 pages, 5 figures, typo in equation 1 from version 1 of the draft corrected

R2 v1 2026-07-22T11:44:02.789Z