English

Evidence for Dimer Crystal Melting in the Frustrated Spin-Ladder BiCu2PO6

Strongly Correlated Electrons 2015-06-12 v1

Abstract

In the spin ladder compound BiCu2_2PO6_6 there exists a decisive dynamics of spin excitations that we classify and characterize using inelastic light scattering. We observe low-energy singlets and a broad triplon continuum extending from 36 cm1^{-1} to 700 cm1^{-1} in (aaaa), (bbbb), and (cccc) light scattering polarizations. Though isolated spin ladder physics can roughly account for the observed excitations at high energies, frustration and interladder interactions need to be considered to fully describe the spectral distribution and scattering selection rules at low and intermediate energies. More significantly, an interladder singlet bound mode at 24 cm1^{-1}, lying below the continuum, shows its largest scattering intensity in interladder (abab) polarization. In contrast, two intraladder bound states at 62 cm1^{-1} and 108 cm1^{-1} with energies comparable to the continuum are observed with light polarization along the leg (bbbb) and the rung (cccc). We attribute the rich spectrum of singlet bound modes to a melting of a dimer crystal. Our study provides evidence for a Z2_2 quantum phase transition from a dimer to a resonating valence bond state driven by singlet fluctuations.

Keywords

Cite

@article{arxiv.1301.6769,
  title  = {Evidence for Dimer Crystal Melting in the Frustrated Spin-Ladder BiCu2PO6},
  author = {K. -Y. Choi and J. W. Hwang and P. Lemmens and D. Wulferding and G. J. Shu and F. C. Chou},
  journal= {arXiv preprint arXiv:1301.6769},
  year   = {2015}
}

Comments

14 pages, 4 figures, Accepted for publication in PRL