Bosonic interference is a fundamental physical phenomenon, and it is believed to lie at the heart of quantum computational advantage. It is thus necessary to develop practical tools to witness its presence, both for a reliable assessment of a quantum source and for fundamental investigations. Here we describe how linear interferometers can be used to unambiguously witness genuine n-boson indistinguishability. The amount of violation of the proposed witnesses bounds the degree of multiboson indistinguishability, for which we also provide a novel intuitive model using set theory. We experimentally implement this test to bound the degree of three-photon indistinguishability in states we prepare using parametric down-conversion. Our approach re...
Quantum computing experiments are moving into a new realm of increasing size and complexity, with th...
Quantum interference of correlated particles is a fundamental quantum phenomenon which carries signa...
Distinguishability theory is developed for quantum interference of the squeezed vacuum states on uni...
Photon indistinguishability plays a fundamental role in information processing, with applications su...
Particle indistinguishability is at the heart of quantum statistics that regulates fundamental pheno...
We report on a universal method to measure the genuine indistinguishability of n-photons - a crucial...
The evolution of bosons undergoing arbitrary linear unitary transformations quickly becomes hard to ...
We report on a universal method to measure the genuine indistinguishability of n photons - a crucial...
The non-classical interference undergone by multiple photons in passive, linear optical networks giv...
Quantum coherence marks a deviation from classical physics, and has been studied as a resource for m...
A boson sampling device is a specialized quantum computer that solves a problem that is strongly bel...
This thesis reports advances in the theory of design, characterization and simulation of multi-photo...
Multi-photon interference is at the heart of the recently proposed linear optical quantum computing ...
11 pages, 3 figuresAssessing whether a quantum state $\hat \rho$ is nonclassical (i.e., incompatible...
Quantum interference lies at the basis of fundamental differences between quantum and classical beha...
Quantum computing experiments are moving into a new realm of increasing size and complexity, with th...
Quantum interference of correlated particles is a fundamental quantum phenomenon which carries signa...
Distinguishability theory is developed for quantum interference of the squeezed vacuum states on uni...
Photon indistinguishability plays a fundamental role in information processing, with applications su...
Particle indistinguishability is at the heart of quantum statistics that regulates fundamental pheno...
We report on a universal method to measure the genuine indistinguishability of n-photons - a crucial...
The evolution of bosons undergoing arbitrary linear unitary transformations quickly becomes hard to ...
We report on a universal method to measure the genuine indistinguishability of n photons - a crucial...
The non-classical interference undergone by multiple photons in passive, linear optical networks giv...
Quantum coherence marks a deviation from classical physics, and has been studied as a resource for m...
A boson sampling device is a specialized quantum computer that solves a problem that is strongly bel...
This thesis reports advances in the theory of design, characterization and simulation of multi-photo...
Multi-photon interference is at the heart of the recently proposed linear optical quantum computing ...
11 pages, 3 figuresAssessing whether a quantum state $\hat \rho$ is nonclassical (i.e., incompatible...
Quantum interference lies at the basis of fundamental differences between quantum and classical beha...
Quantum computing experiments are moving into a new realm of increasing size and complexity, with th...
Quantum interference of correlated particles is a fundamental quantum phenomenon which carries signa...
Distinguishability theory is developed for quantum interference of the squeezed vacuum states on uni...