arXiv · cond-mat/9809026
Effective Hamiltonian for Excitons with Spin Degrees of Freedom
Abstract
Starting from the conventional electron-hole Hamiltonian ${\cal H}_{eh}$, we derive an effective Hamiltonian $\tilde{\cal H}_{1s}$ for $1s$ excitons with spin degrees of freedom. The Hamiltonian describes optical processes close to the exciton resonance for the case of weak excitation. We show that straightforward bosonization of ${\cal H}_{eh}$ does not give the correct form of $\tilde{\cal H}_{1s}$, which we obtain by a projection onto the subspace spanned by the $1s$ excitons. The resulting relaxation and renormalization terms generate an interaction between excitons with opposite spin. Moreover, exciton-exciton repulsive interaction is greatly reduced by the renormalization. The agreement of the present theory with the experiment supports the validity of the description of a fermionic system by bosonic fields in two dimensions.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jun-ichi Inoue, Tobias Brandes, Akira Shimizu. 1998-09-02. Effective Hamiltonian for Excitons with Spin Degrees of Freedom. https://doi.org/10.1143/jpsj.67.3384
Cite the original work for its findings. Save a collection to share your selection of sources.