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Stabilizing Nanolasers via Polarization Lifetime Tuning
[post]
2021
unpublished
We investigate the emission dynamics of mutually coupled nanolasers and predict ways to optimize their stability i.e. maximize their locking range. We find that tuning the cavity lifetime to the same order of magnitude as the dephasing time of the microscopic polarization yields optimal operation conditions which allow for wider tuning ranges than usually observed in conventional semiconductor lasers. The lasers are modeled by a Maxwell-Bloch type class-C laser model. For our analysis we
doi:10.21203/rs.3.rs-612149/v1
fatcat:cgdkjgokcfeddhk7jsqmd2uz4e