A review of our recent experiments on the studies of spin-lattice relaxation in diluted magnetic semiconductor quantum wells (undoped (Cd,Mn)Te/(Cd,Mg)Te; n-doped (Cd,Mn)Te/(Cd,Mg)Te and p-doped (Cd,Mn)Te/(Cd,Mg,Zn)Te) and (Cd,Mn)Se/ZnSe quantum dots is given. An optical detection of the nonequilibr
Site dilution of quantum spins in the honeycomb and square lattices
β Scribed by Eduardo V. Castro; N.M.R. Peres
- Publisher
- Elsevier Science
- Year
- 2006
- Tongue
- English
- Weight
- 118 KB
- Volume
- 378-380
- Category
- Article
- ISSN
- 0921-4526
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β¦ Synopsis
The effect of site dilution on the magnetization and on the density of states (DOS) of a spin-S antiferromagnetic Heisenberg-model in the honeycomb lattice is studied using linear spin wave theory. For a given value of dilution the linearized Hamiltonian is solved in real space. The DOS is computed using a modified version of the recursion method, usually used for fermionic systems. The finite-size scaling results for the magnetization in the Honeycomb lattice are in qualitative agreement with similar results obtained for the square lattice case. We apply our results to the description of dilution effects on the NeΒ΄el temperature of Mn p Zn 1Γp PS 3 , a spin 5 2 Heisenberg antiferromagnet in an honeycomb lattice.
π SIMILAR VOLUMES
Eu~Sr 1 \_~Sis regarded as a random site Heisenberg model on the fcc lattice where the first neighbour Eu-Eu exchange energy is ferromagnetic, the second neighbour Eu-Eu exchange energy is antiferromagnetic, and all other exchange energies (Eu-Sr, Sr-Sr) are nonmagnetic. The material is considered a