Nanophotonic interfaces between single emitters and light promise to enable new quantum optical technologies. Here, we use a combination of finite element simulations and analytic quantum theory to investigate the interaction of various quantum emitters with slot-waveguide rings. We predict that for rings with radii as small as 1.44 mu m, with a Q-factor of 27,900, near-unity emitter-waveguide coupling efficiencies and emission enhancements on the order of 1300 can be achieved. By tuning the ring geometry or introducing losses, we show that realistic emitter-ring systems can be made to be either weakly or strongly coupled, so that we can observe Rabi oscillations in the decay dynamics even for micron-sized rings. Moreover, we demonstrate th...
We show generation of quantum states of light using high quality factor silicon ring resonators. Qua...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Funding: Ł.D.acknowledges the financial support from the Alexander von Humboldt Foundation. S.-H. K....
Nanophotonic interfaces between single emitters and light promise to enable new quantum optical tech...
We report on cryogenic coupling of organic molecules to ring microresonators obtained by looping sub...
Integrated photonic circuits provide a versatile toolbox of functionalities for advanced quantum opt...
Integrated photonic circuits provide a versatile toolbox of functionalities for advanced quantum opt...
We describe a general analytical framework of a nanoplasmonic cavity-emitter system interacting with...
To implement quantum light sources based on quantum emitters in applications, it is desirable to imp...
A ring of sub-wavelength spaced dipole-coupled quantum emitters features extraordinary optical prope...
Future scalable photonic quantum information processing relies on the ability of integrating multipl...
In the past decades quantum optics has been at the forefront of quantum innovative technologies. For...
To take existing quantum optical experiments and devices into more practical regimes requires the co...
The formation of a coupled state among on-chip, photonic nanostructures at arbitrary positions as we...
We show generation of quantum states of light using high quality factor silicon ring resonators. Qua...
We show generation of quantum states of light using high quality factor silicon ring resonators. Qua...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Funding: Ł.D.acknowledges the financial support from the Alexander von Humboldt Foundation. S.-H. K....
Nanophotonic interfaces between single emitters and light promise to enable new quantum optical tech...
We report on cryogenic coupling of organic molecules to ring microresonators obtained by looping sub...
Integrated photonic circuits provide a versatile toolbox of functionalities for advanced quantum opt...
Integrated photonic circuits provide a versatile toolbox of functionalities for advanced quantum opt...
We describe a general analytical framework of a nanoplasmonic cavity-emitter system interacting with...
To implement quantum light sources based on quantum emitters in applications, it is desirable to imp...
A ring of sub-wavelength spaced dipole-coupled quantum emitters features extraordinary optical prope...
Future scalable photonic quantum information processing relies on the ability of integrating multipl...
In the past decades quantum optics has been at the forefront of quantum innovative technologies. For...
To take existing quantum optical experiments and devices into more practical regimes requires the co...
The formation of a coupled state among on-chip, photonic nanostructures at arbitrary positions as we...
We show generation of quantum states of light using high quality factor silicon ring resonators. Qua...
We show generation of quantum states of light using high quality factor silicon ring resonators. Qua...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
Funding: Ł.D.acknowledges the financial support from the Alexander von Humboldt Foundation. S.-H. K....