We investigate the dynamics of single- and multiphoton emission from detuned strongly coupled systems based on the quantum-dot–photonic-crystal resonator platform. Transmitting light through such systems can generate a range of nonclassical states of light with tunable photon counting statistics due to the nonlinear ladder of hybridized light-matter states. By controlling the detuning between emitter and resonator, the transmission can be tuned to strongly enhance either single- or two-photon emission processes. Despite the strongly dissipative nature of these systems, we find that by utilizing a self-homodyne interference technique combined with frequency filtering we are able to find a strong two-photon component of the emission in the mu...
We study the collective decay of two-level emitters coupled to a nonlinear waveguide, for example, a...
Coherent interactions between quantum emitters in tailored photonic structures is a fundamental buil...
We employ active feedback to stabilize the frequency of single photons emitted by two separate quant...
�� 2018 The Authors. Published by Optical Society of America. This is an open access article availab...
The rapid generation of non-classical light serves as the foundation for exploring quantum optics an...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
In the last decade, there has been remarkable progress on the practical integration of on-chip quant...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
We acknowledge support by the State of Bavaria and the German Ministry of Education and Research (BM...
Single photons constitute a main platform in quantum science and technology: they carry quantum info...
We establish a general framework for studying the bound states and the photon-emission dynamics of q...
The on-chip generation of nonclassical states of light is a key requirement for future optical quant...
The photon blockade (PB) effect in emitter-cavity systems depends on the anharmonicity of the ladder...
Semiconductor-based emitters of pairwise photonic entanglement are a promising constituent of photon...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
We study the collective decay of two-level emitters coupled to a nonlinear waveguide, for example, a...
Coherent interactions between quantum emitters in tailored photonic structures is a fundamental buil...
We employ active feedback to stabilize the frequency of single photons emitted by two separate quant...
�� 2018 The Authors. Published by Optical Society of America. This is an open access article availab...
The rapid generation of non-classical light serves as the foundation for exploring quantum optics an...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
In the last decade, there has been remarkable progress on the practical integration of on-chip quant...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
We acknowledge support by the State of Bavaria and the German Ministry of Education and Research (BM...
Single photons constitute a main platform in quantum science and technology: they carry quantum info...
We establish a general framework for studying the bound states and the photon-emission dynamics of q...
The on-chip generation of nonclassical states of light is a key requirement for future optical quant...
The photon blockade (PB) effect in emitter-cavity systems depends on the anharmonicity of the ladder...
Semiconductor-based emitters of pairwise photonic entanglement are a promising constituent of photon...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
We study the collective decay of two-level emitters coupled to a nonlinear waveguide, for example, a...
Coherent interactions between quantum emitters in tailored photonic structures is a fundamental buil...
We employ active feedback to stabilize the frequency of single photons emitted by two separate quant...