Multiboson Correlation Interferometry with arbitrary single-photon pure states
arXiv:1410.8121 · doi:10.1103/PhysRevLett.114.243601
Abstract
We provide a compact full description of multiboson correlation measurements of arbitrary order N in passive linear interferometers with arbitrary input single-photon pure states. This allows us to physically analyze the novel problem of multiboson correlation sampling at the output of random linear interferometers. Our results also describe general multiboson correlation landscapes for an arbitrary number of input single photons and arbitrary interferometers. In particular, we use two different schemes to demonstrate, respectively, arbitrary-order quantum beat interference and 100% visibility entanglement correlations even for input photons distinguishable in their frequencies.
accepted for publication in Physical Review Letters
References in corpus (19)
- Photonic Boson Sampling in a Tunable Circuit
- Experimental demonstration of a BDCZ quantum repeater node
- One-Way Quantum Computing in the Optical Frequency Comb
- Entangling Independent Photons by Time Measurement
- Quantum Beat of Two Single Photons
- Electro-Optic Modulation of Single Photons
- Multi-photon quantum interference in a multi-port integrated photonic device
- Sampling of partially distinguishable bosons and the relation to the multidimensional permanent
- Linear Optical Quantum Metrology with Single Photons: Exploiting Spontaneously Generated Entanglement to Beat the Shot-Noise Limit
- Partial indistinguishability theory for multi-photon experiments in multiport devices
- Quantum improvement of time transfer between remote clocks
- High coherence photon pair source for quantum communication
- Observation of detection-dependent multi-photon coherence times
- Multi-Boson Correlation Sampling with Multi-mode Thermal Sources
- Boson-sampling with photons of arbitrary spectral structure
- Factoring numbers with a single interferogram
- Effect of frequency mismatched photons in quantum information processing
- Sampling of bosonic qubits
- Characterizing Temporal Distinguishability of an N-Photon State by Generalized Photon Bunching Effect with Multi-Photon Interference