Published September 1998 | Version v1
Report Open

Zero modes and thermodynamics of disordered spin-1/2 ladders

  • 1. Imperial College, Dept. of Mathematics, London (United Kingdom)
  • 2. Inst. of Physics, Tbilisi (Georgia)
  • 3. Dept. of Physics, Oxford Univ., Oxford, (United Kingdom)
  • 4. Inst. of Theoretical Physics, CAS, Beijing (China)

Description

The influence of nonmagnetic doping on the thermodynamic properties of two-leg S=1/2 spin ladders is studied in this paper. It is shown that, for a weak interchain coupling, the problem can be mapped onto a model of random mass Dirac (Majorana) fermions. We investigate in detail the structure of the fermionic states localized at an individual mass kink (zero modes) in the framework of a generalized Dirac model. The low-temperature thermodynamic properties are dominated by these zero modes. We use the single-fermion density of states, known to exhibit the Dyson singularity in the zero-energy limit, to construct the thermodynamics of the spin ladder. In particular, we find that the magnetic susceptibility χ diverges at T→0 as 1/Tln2(1/T), and the specific heat behaves as C∝1/ln3(1/T). The predictions on magnetic susceptibility are consistent with the most recent results of quantum Monte Carlo simulations on doped ladders with randomly distributed impurities. We also calculate the average staggered magnetic susceptibility induced in the system by such defects. (author)

Availability note (English)

Available from INIS in electronic form

Files

29065685.pdf

Files (416.9 kB)

Name Size Download all
md5:491616f4dee9f0cf0408ec8bc73b5bb9
416.9 kB Preview Download

Additional details

Publishing Information

Imprint Pagination
25 p.
Report number
IC--98/149

Optional Information

Notes
41 refs, 1 fig