The role of entanglement in metrology with photon pairs is investigated. We consider the situations where either one photon only interacts with a probe, or where both photons interact with two independent systems. Based on arguments from quantum information theory, we show that the presence of entanglement in the state cannot lead to results, which could not be obtained with separable states. This shows that entanglement can only provide advantages when genuine two-photon interactions are present
Abstract. We investigate the entanglement produced by a multi-path interferometer that is composed o...
Quantum entanglement, the inseparable entwinement of particles at the atomic scale, has emerged from...
We analyze a quantum measurement where the apparatus is initially in a mixed state. We show that the...
We give a simple intuition for why and when entanglement is needed for quantum-enhanced precision me...
Two-qubit entangling gates allow the realization of new types of generalized quantum measurement, We...
We show how the property of dualism, which can exist in the entanglement of identical particles, can...
Entanglement-assisted quantum communication employs preshared entanglement between sender and receiv...
Entangled photon pairs are predicted to linearize and increase the efficiency of two-photon absorpti...
Numerous work had been done to quantify the entanglement of a two-qubit quantum state, but it can be...
This thesis presents the results of a series of four photonic experiments on the topic of quantum me...
Entangled photons can be used to make measurements with an accuracy beyond that possible with classi...
The study of entangled states has greatly improved the basic understanding about two-photon interfer...
published versionInternational audienceSingle-photon entangled states, i.e. states describing two op...
In this work, we study the role of quantum entanglement in a double-slit Young interference experime...
Correlated photons inspire abundance of metrology-related platforms, which benefit from quantum (ant...
Abstract. We investigate the entanglement produced by a multi-path interferometer that is composed o...
Quantum entanglement, the inseparable entwinement of particles at the atomic scale, has emerged from...
We analyze a quantum measurement where the apparatus is initially in a mixed state. We show that the...
We give a simple intuition for why and when entanglement is needed for quantum-enhanced precision me...
Two-qubit entangling gates allow the realization of new types of generalized quantum measurement, We...
We show how the property of dualism, which can exist in the entanglement of identical particles, can...
Entanglement-assisted quantum communication employs preshared entanglement between sender and receiv...
Entangled photon pairs are predicted to linearize and increase the efficiency of two-photon absorpti...
Numerous work had been done to quantify the entanglement of a two-qubit quantum state, but it can be...
This thesis presents the results of a series of four photonic experiments on the topic of quantum me...
Entangled photons can be used to make measurements with an accuracy beyond that possible with classi...
The study of entangled states has greatly improved the basic understanding about two-photon interfer...
published versionInternational audienceSingle-photon entangled states, i.e. states describing two op...
In this work, we study the role of quantum entanglement in a double-slit Young interference experime...
Correlated photons inspire abundance of metrology-related platforms, which benefit from quantum (ant...
Abstract. We investigate the entanglement produced by a multi-path interferometer that is composed o...
Quantum entanglement, the inseparable entwinement of particles at the atomic scale, has emerged from...
We analyze a quantum measurement where the apparatus is initially in a mixed state. We show that the...