arXiv · 1610.05473
Multivalley engineering in semiconductor microcavities
Abstract
We consider exciton-photon coupling in semiconductor microcavities in which separate periodic potentials have been embedded for excitons and photons. We show theoretically that this system supports degenerate ground-states appearing at non-zero in-plane momenta, corresponding to multiple valleys in reciprocal space, which are further separated in polarization corresponding to a polarization-valley coupling in the system. Aside forming a basis for valleytronics, the multivalley dispersion is predicted to allow for spontaneous momentum symmetry breaking and two-mode squeezing under non-resonant and resonant excitation, respectively.
Explore related subjects
Keep this discovery
M. Sun, I. G. Savenko, H. Flayac, T. C. H. Liew. 2016-10-18. Multivalley engineering in semiconductor microcavities. https://doi.org/10.1038/srep45243
Cite the original work for its findings. Save a collection to share your selection of sources.