arXiv · 1801.09255
Zeeman Splitting and Inverted Polarization of Biexciton Emission in Monolayer WS2
Abstract
We investigate the magnetic-field-induced splitting of biexcitons in monolayer WS$_2$ using polarization-resolved photoluminescence spectroscopy in out-of-plane magnetic fields up to 30 T. The observed $g$ factor of the biexciton amounts to $-3.89$, closely matching the $g$ factor of the neutral exciton. The biexciton emission shows an inverted circular field-induced polarization upon linearly polarized excitation, i.e. it exhibits preferential emission from the high-energy peak in a magnetic field. This phenomenon is explained by taking into account the configuration of the biexciton constituents in momentum space and their respective energetic behavior in magnetic fields. Our findings reveal the critical role of dark excitons in the composition of this many-body state.
Explore related subjects
Keep this discovery
Philipp Nagler, Mariana V. Ballottin, Anatolie A. Mitioglu, Mikhail V. Durnev, Takashi Taniguchi, Kenji Watanabe, Alexey Chernikov, Christian Schüller, Mikhail M. Glazov, Peter C. M. Christianen, Tobias Korn. 2018-01-28. Zeeman Splitting and Inverted Polarization of Biexciton Emission in Monolayer WS2. https://doi.org/10.1103/physrevlett.121.057402
Cite the original work for its findings. Save a collection to share your selection of sources.