Institute of Physics, Chinese Academy of Science, Beijing 100190, China.
School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Phys Rev Lett. 2018 May 25;120(21):213901. doi: 10.1103/PhysRevLett.120.213901.
Two-photon Rabi splitting in a cavity-dot system provides a basis for multiqubit coherent control in a quantum photonic network. Here we report on two-photon Rabi splitting in a strongly coupled cavity-dot system. The quantum dot was grown intentionally large in size for a large oscillation strength and small biexciton binding energy. Both exciton and biexciton transitions couple to a high-quality-factor photonic crystal cavity with large coupling strengths over 130 μeV. Furthermore, the small binding energy enables the cavity to simultaneously couple with two exciton states. Thereby, two-photon Rabi splitting between the biexciton and cavity is achieved, which can be well reproduced by theoretical calculations with quantum master equations.
在腔-点系统中的双光子拉比分裂为量子光子网络中的多量子比特相干控制提供了基础。在这里,我们报告了在强耦合腔-点系统中的双光子拉比分裂。量子点被有意地生长得足够大,以获得较大的振荡强度和较小的双激子束缚能。激子和双激子跃迁都与高品质因子光子晶体腔耦合,耦合强度超过 130 μeV。此外,小的束缚能使腔能够同时与两个激子态耦合。由此,实现了双激子和腔之间的双光子拉比分裂,其可以通过量子主方程的理论计算很好地再现。