doi:10.1088/1367-2630/15/10/105025 Abstract. Two-photon quantum interference at a beam splitter, commonly known as Hong–Ou–Mandel interference, is a fundamental demonstration of the quantum mechanical nature of electromagnetic fields and a key component of various quantum information processing protocols. The phenomenon was recently demonstrated with microwave-frequency photons by Lang et al (2013 Nature Phys. 9 345–8). This experiment employed circuit QED systems as sources of microwave photons, and was based on the measurement of second-order cross-correlation and auto-correlation functions of the microwave fields at the outputs of the beam splitter using linear detectors. Here we present the calculation of these correlation functions for...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
Quantum interference lies at the foundation of many protocols for scalable quantum computing and com...
Superconducting circuits have been successfully established as systems to prepare and investigate mi...
The zeroing of second order correlation functions between output fields after interferences in a 50/...
We have measured quantum interference between two single microwave photons trapped in a superconduct...
We report on the study of two-photon interference in the frequency domain. Bell and Hong-Ou-Mandel e...
In quantum optics, the interaction between atoms and photons is studied. In recent years, microwave ...
Abstract. We report the results of coincidence counting experiments at the output of a Michelson int...
Two-photon interference, known as the Hong-Ou-Mandel effect, has colossal implications for quantum t...
The interference of two independent single-photon pulses impinging on a beam splitter is analysed in...
Microwave quantum optics using superconducting circuits, also known as circuit QED, is a recent and ...
We investigate the two-photon scattering properties of a Jaynes-Cummings (JC) nonlinearity consistin...
Interference experiments provide a simple yet powerful tool to unravel fundamental features of quant...
The interference of two single photons impinging on a beam splitter is measured in a time-resolved m...
We report an electrically driven semiconductor single-photon source capable of emitting photons with...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
Quantum interference lies at the foundation of many protocols for scalable quantum computing and com...
Superconducting circuits have been successfully established as systems to prepare and investigate mi...
The zeroing of second order correlation functions between output fields after interferences in a 50/...
We have measured quantum interference between two single microwave photons trapped in a superconduct...
We report on the study of two-photon interference in the frequency domain. Bell and Hong-Ou-Mandel e...
In quantum optics, the interaction between atoms and photons is studied. In recent years, microwave ...
Abstract. We report the results of coincidence counting experiments at the output of a Michelson int...
Two-photon interference, known as the Hong-Ou-Mandel effect, has colossal implications for quantum t...
The interference of two independent single-photon pulses impinging on a beam splitter is analysed in...
Microwave quantum optics using superconducting circuits, also known as circuit QED, is a recent and ...
We investigate the two-photon scattering properties of a Jaynes-Cummings (JC) nonlinearity consistin...
Interference experiments provide a simple yet powerful tool to unravel fundamental features of quant...
The interference of two single photons impinging on a beam splitter is measured in a time-resolved m...
We report an electrically driven semiconductor single-photon source capable of emitting photons with...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
Quantum interference lies at the foundation of many protocols for scalable quantum computing and com...
Superconducting circuits have been successfully established as systems to prepare and investigate mi...