English

Conformal anomaly in magnetic finite temperature response of strongly interacting one-dimensional spin systems

Strongly Correlated Electrons 2022-10-18 v2 Mesoscale and Nanoscale Physics Statistical Mechanics High Energy Physics - Theory

Abstract

The conformal anomaly indicates the breaking of conformal symmetry (angle-preserving transformations) in the quantum theory by quantum fluctuations and is a close cousin of the gravitational anomaly. We show, for the first time, that the conformal anomaly controls the variance of the local magnetization MlocM_{loc} at finite temperatures in spin chains and spin ladders. This effect is perceived at constant and variable temperature across the sample. The change of MlocM_{loc} induced by the conformal anomaly is of the order of 3-5\% of the maximal spin at one Kelvin for DIMPY or CuPzN and increases linearly with temperature. Further, for a temperature gradient of 10\% across the sample, the time-relaxation of the non-equilibrium MlocM_{loc} is of the order of nanoseconds. Thus, we believe that experimental techniques such as neutron scattering, nuclear magnetic resonance~(NMR), spin noise and ultrafast laser pumping should pinpoint the presence of the conformal anomaly. Therefore, we pave the road to detect the conformal anomaly in spin observables of strongly interacting low-dimensional magnets.

Keywords

Cite

@article{arxiv.2210.07972,
  title  = {Conformal anomaly in magnetic finite temperature response of strongly interacting one-dimensional spin systems},
  author = {Christian Northe and Chunxu Zhang and Rafał Wawrzyńczak and Johannes Gooth and Stanislaw Galeski and Ewelina M. Hankiewicz},
  journal= {arXiv preprint arXiv:2210.07972},
  year   = {2022}
}

Comments

5 pages plus appendices, 4 figures