English

Efficient Density Matrix Renormalization Group algorithm to study Y-Junctions with integer and half-integer spin

Strongly Correlated Electrons 2016-03-23 v1

Abstract

An efficient density matrix renormalization group (DMRG) algorithm is presented and applied to Y-junctions, systems with three arms of nn sites that meet at a central site. The accuracy is comparable to DMRG of chains. As in chains, new sites are always bonded to the most recently added sites and the superblock Hamiltonian contains only new or once renormalized operators. Junctions of up to N=3n+1500N = 3n + 1 \approx 500 sites are studied with antiferromagnetic (AF) Heisenberg exchange JJ between nearest-neighbor spins SS or electron transfer tt between nearest neighbors in half-filled Hubbard models. Exchange or electron transfer is exclusively between sites in two sublattices with NANBN_A \ne N_B. The ground state (GS) and spin densities ρr=<Srz> \rho_r = <S^z_r > at site rr are quite different for junctions with SS = 1/2, 1, 3/2 and 2. The GS has finite total spin SG=2S(S)S_G = 2S (S) for even (odd) NN and for MG=SGM_G =S_G in the SGS_G spin manifold, ρr>0(<0)\rho_r > 0 (< 0) at sites of the larger (smaller) sublattice. SS = 1/2 junctions have delocalized states and decreasing spin densities with increasing NN. SS = 1 junctions have four localized Sz=1/2S_z = 1/2 states at the end of each arm and centered on the junction, consistent with localized states in SS = 1 chains with finite Haldane gap. The GS of SS = 3/2 or 2 junctions of up to 500 spins is a spin density wave (SDW) with increased amplitude at the ends of arms or near the junction. Quantum fluctuations completely suppress AF order in SS = 1/2 or 1 junctions, as well as in half-filled Hubbard junctions, but reduce rather than suppress AF order in SS = 3/2 or 2 junctions.

Keywords

Cite

@article{arxiv.1508.03118,
  title  = {Efficient Density Matrix Renormalization Group algorithm to study Y-Junctions with integer and half-integer spin},
  author = {Manoranjan Kumar and Aslam Parvej and Simil Thomas and S. Ramasesha and Z. G. Soos},
  journal= {arXiv preprint arXiv:1508.03118},
  year   = {2016}
}

Comments

11 pages, 11 Figures and submitted to PRB

R2 v1 2026-06-22T10:32:41.477Z