English

Cross-over from an incommensurate singlet spiral state with a vanishingly small spin-gap to a valence bond solid state in dimerized frustrated ferromagnetic spin-chains

Strongly Correlated Electrons 2017-09-05 v2

Abstract

Motivated by the magnetic properties of the spin-chain compounds LiCuSbO4_4\equivLiSbCuO4_4 and Rb2_2Cu2_2Mo3_3O12_{12}, we study the ground state of the Heisenberg chain with dimerized nearest-neighbor ferromagnetic (FM)(J1,J1<0J_1, J_1^\prime<0) and next-nearest-neighbor antiferromagnetic (J2>0J_2>0) couplings. Using the density-matrix renormalization group technique and spin-wave theory we find a first-order transition between a fully-polarized FM and an incommensurate spiral state at 2α=β/(1+β)2\alpha=\beta/(1+\beta), where α\alpha is the frustration ratio J2/J1J_2/|J_1| and β\beta the degree of dimerization J1/J1J_1^\prime/J_1.In the singlet spiral state the spin-gap is vanishingly small in the vicinity of the FM transition, corresponding to a situation of LiCuSbO4_4. For larger α\alpha, corresponding to Rb2_2Cu2_2Mo3_3O12_{12}, and smaller β\beta there is a crossover from this frustration induced incommensurate state to an Affleck-Lieb-Kennedy-Tasaki-type valence bond solid state with substantial spin-gaps.

Keywords

Cite

@article{arxiv.1612.07609,
  title  = {Cross-over from an incommensurate singlet spiral state with a vanishingly small spin-gap to a valence bond solid state in dimerized frustrated ferromagnetic spin-chains},
  author = {Cliò Efthimia Agrapidis and Stefan-Ludwig Drechsler and Jeroen van den Brink and Satoshi Nishimoto},
  journal= {arXiv preprint arXiv:1612.07609},
  year   = {2017}
}

Comments

4 pages, 5 figures