Measuring entanglement is a demanding task that usually requires full tomography of a quantum system, involving a number of observables that grows exponentially with the number of parties. Recently, it was suggested that adding a single ancillary qubit would allow for the efficient measurement of concurrence, and indeed any entanglement monotone associated with antilinear operations. Here, we report on the experimental implementation of such a device - an embedding quantum simulator - in photonics, encoding the entangling dynamics of a bipartite system into a tripartite one. We show that bipartite concurrence can be efficiently extracted from the measurement of merely two observables, instead of 15, without full tomographic information
We show how an unknown mixed quantum state's entanglement can be quantified by a suitable, local par...
The time evolution of quantum many-body systems is one of the most important processes for benchmark...
We address the experimental determination of entanglement for systems made of a pair of polarization...
We present an experimental proof-of-principle for the generation and detection of pure two-qubit sta...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
We formulate a method of quantum tomography that scales linearly with the number of photons and invo...
The time evolution of quantum many-body systems is one of the most important processes for benchmark...
The time evolution of quantum many-body systems is one of the most important processes for benchmark...
We show that each entanglement witness detecting given bipartite entangled state provides an estimat...
Entanglement is the powerful and enigmatic resource central to quantum information processing, which...
In this thesis, I present experimental and theoretical work which assesses and develops a range of t...
Quantum information systems are on a path to vastly exceed the complexity of any classical device. T...
We show how an unknown mixed quantum state's entanglement can be quantified by a suitable, local par...
The time evolution of quantum many-body systems is one of the most important processes for benchmark...
We address the experimental determination of entanglement for systems made of a pair of polarization...
We present an experimental proof-of-principle for the generation and detection of pure two-qubit sta...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
The time evolution of quantum many-body systems is one of the most important processes for benchmar...
We formulate a method of quantum tomography that scales linearly with the number of photons and invo...
The time evolution of quantum many-body systems is one of the most important processes for benchmark...
The time evolution of quantum many-body systems is one of the most important processes for benchmark...
We show that each entanglement witness detecting given bipartite entangled state provides an estimat...
Entanglement is the powerful and enigmatic resource central to quantum information processing, which...
In this thesis, I present experimental and theoretical work which assesses and develops a range of t...
Quantum information systems are on a path to vastly exceed the complexity of any classical device. T...
We show how an unknown mixed quantum state's entanglement can be quantified by a suitable, local par...
The time evolution of quantum many-body systems is one of the most important processes for benchmark...
We address the experimental determination of entanglement for systems made of a pair of polarization...