Opt Lett. 2018 Sep 1;43(17):4280-4283. doi: 10.1364/OL.43.004280.
We present an oxide aperture microcavity with embedded quantum dots which utilizes a three-contact design to independently tune the quantum dot wavelength and birefringence of the cavity modes. A polarization splitting tuning of ∼5 GHz is observed. For a typical microcavity polarization splitting, the method can be used to achieve perfect polarization degeneracy that is required for many polarization-based implementations of photonic quantum gates. The embedded quantum dot wavelength can be tuned into resonance with the cavity, independent of the polarization tuning.
我们提出了一种带有嵌入式量子点的氧化物孔径微腔,该微腔采用三接触设计来独立调节量子点波长和腔模双折射。观察到约 5GHz 的偏振分裂调谐。对于典型的微腔偏振分裂,该方法可用于实现许多基于偏振的光子量子门实现所需的完美偏振简并。嵌入式量子点波长可以与腔共振调谐,而与偏振调谐无关。