English

Scale Invariance in the Lowest Landau Level

Quantum Gases 2023-06-19 v3 Strongly Correlated Electrons

Abstract

We show that the discrete set of pair amplitudes AmA_m introduced by Haldane are an angular-momentum resolved generalization of the Tan two-body contact, which parametrizes universal short-range correlations in atomic quantum gases. The pair amplitudes provide a complete description of translation-invariant and rotation-invariant states in the lowest Landau level (LLL), both compressible and incompressible. To leading nontrivial order beyond the non-interacting high-temperature limit, they are determined analytically in terms of the Haldane pseudopotential parameters VmV_m, which provides a qualitative description of the crossover towards incompressible ground states for different filling factors. Moreover, we show that for contact interactions g2δ(2)(x)\sim g_2 \delta^{(2)}({\bf x}), which are scale invariant at the classical level, the non-commutativity of the guiding center coordinates gives rise to a quantum anomaly in the commutator i[H^LLL,D^R]=(2+)H^LLLi [\hat{H}_{\rm LLL}, \hat{D}_R] = (2 + \ell \partial_\ell) \hat{H}_{\rm LLL} with the dilatation operator D^R\hat{D}_R in the LLL, which replaces the trace anomaly in the absence of a magnetic field. The interaction-induced breaking of scale invariance gives rise to a finite frequency shift of the breathing mode in a harmonic trap, which describes transitions between different Landau levels, the strength of which is estimated in terms of the relevant dimensionless coupling constant g~2\tilde{g}_2.

Cite

@article{arxiv.2210.10086,
  title  = {Scale Invariance in the Lowest Landau Level},
  author = {Johannes Hofmann and Wilhelm Zwerger},
  journal= {arXiv preprint arXiv:2210.10086},
  year   = {2023}
}

Comments

18 pages, 3 figures

R2 v1 2026-06-28T03:56:35.482Z