Physics – Condensed Matter – Strongly Correlated Electrons
Scientific paper
2000-11-22
Phys. Rev. B 63, 144429 (2001)
Physics
Condensed Matter
Strongly Correlated Electrons
9 pages, 9 figures
Scientific paper
10.1103/PhysRevB.63.144429
We study ground-state properties and the low-lying excitations of Heisenberg spin ladders composed of two ferrimagnetic chains with alternating site spins $(S_1>S_2)$ by using the bosonic Dyson-Maleev formalism and Lanczos numerical techniques. The emphasis is on properties of the ferrimagnetic phase which is stable for antiferromagnetic interchain couplings $J_{\perp}\geq 0$. There are two basic implications of the underlying lattice structure: (i) the spin-wave excitations form folded acoustic and optical branches in the extended Brillouin zone and (ii) the ground state parameters (such as the on-site magnetizations and spin-stiffness constant) show a crossover behavior in the weak-coupling region $0
Ivanov N. B.
Richter Jadwiga
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