References of "Thiel, C"
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Peer Reviewed
See detailIndependent single photon emitters – a versatile source for the generation
von Zanthier, J.; Maser, A.; Wiegner, R. et al

Conference (2011)

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See detailGeneration of all symmetric as well as all total angular momentum eigenstates in photonic or matter qubits
von Zanthier, J.; Maser, A.; Wiegner, R. et al

Conference (2011)

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See detailSub-wavelength quantum imaging using uncorrelated single photon sources
von Zanthier, J.; Thiel, C.; Bastin, Thierry ULg et al

Poster (2011)

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See detailHeralded entanglement of arbitrary degree in remote atoms by detection of emitted photons
Schilling, U.; Thiel, C.; Solano, E. et al

Poster (2010)

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See detailGeneration of all Symmetric and all Total Angular Momentum Eigenstates in Remote Qubits
Maser, A.; Schilling, U.; Bastin, Thierry ULg et al

Poster (2010)

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See detailSub-wavelength Imaging and Irradiation with Entangled Particles
Von Zanthier, J.; Thiel, C.; Solano, E. et al

Patent (2009)

Detailed reference viewed: 16 (1 ULg)
Peer Reviewed
See detailGeneration of Long-lived Entanglement on Demand in Remote Qubits
Schilling, U.; Thiel, C.; Bastin, Thierry ULg et al

Conference (2009)

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Peer Reviewed
See detailGeneration of total angular momentum eigenstates in remote qubits
Maser, A.; Schilling, U.; Bastin, Thierry ULg et al

Conference (2009)

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See detailGeneration of total angular momentum eigenstates in remote qubits
Maser, A.; Schilling, U.; Bastin, Thierry ULg et al

in Physical Review. A (2009), 79

We propose a scheme enabling the universal coupling of angular momentum of N remote noninteracting qubits using linear optical tools only. Our system consists of N single-photon emitters in a ... [more ▼]

We propose a scheme enabling the universal coupling of angular momentum of N remote noninteracting qubits using linear optical tools only. Our system consists of N single-photon emitters in a configuration that are entangled among their long-lived ground-state qubits through suitably designed measurements of the emitted photons. In this manner, we present an experimentally feasible algorithm that is able to generate any of the 2N symmetric and nonsymmetric total angular momentum eigenstates spanning the Hilbert space of the N-qubit compound. [less ▲]

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See detailSub-Rayleigh quantum imaging using single-photon sources
Thiel, C.; Bastin, Thierry ULg; von Zanthier, J. et al

in Physical Review. A (2009), 80

We propose a technique capable of imaging a distinct physical object with sub-Rayleigh resolution in an ordinary far-field imaging setup using single-photon sources and linear optical tools only. We ... [more ▼]

We propose a technique capable of imaging a distinct physical object with sub-Rayleigh resolution in an ordinary far-field imaging setup using single-photon sources and linear optical tools only. We exemplify our method for the case of a rectangular aperture and two or four single-photon emitters obtaining a resolution enhanced by a factor of 2 or 4, respectively. [less ▲]

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See detailHeralded entanglement of arbitrary degree in remote qubits
Schilling, U.; Thiel, C.; Solano, E. et al

in Physical Review. A (2009), 80

Incoherent scattering of photons off two remote atoms with a -level structure is used as a basic Young-type interferometer to herald long-lived entanglement of an arbitrary degree. The degree of ... [more ▼]

Incoherent scattering of photons off two remote atoms with a -level structure is used as a basic Young-type interferometer to herald long-lived entanglement of an arbitrary degree. The degree of entanglement, as measured by the concurrence, is found to be tunable by two easily accessible experimental parameters. Fixing one of them to certain values unveils an analog to the Malus’ law. An estimate of the variation in the degree of entanglement due to uncertainties in an experimental realization is given. [less ▲]

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See detailOperational Determination of Multiqubit Entanglement Classes via Tuning of Local Operations
Bastin, Thierry ULg; Thiel, C.; von Zanthier, J. et al

in Physical Review Letters (2009), 102

We present a physical setup with which it is possible to produce arbitrary symmetric long-lived multiqubit entangled states in the internal ground levels of photon emitters, including the paradigmatic ... [more ▼]

We present a physical setup with which it is possible to produce arbitrary symmetric long-lived multiqubit entangled states in the internal ground levels of photon emitters, including the paradigmatic Greenberger-Horne-Zeilinger and W states. In the case of three emitters, where each tripartite entangled state belongs to one of two well-defined entanglement classes, we prove a one-to-one correspondence between well-defined sets of experimental parameters, i.e., locally tunable polarizer orientations, and multiqubit entanglement classes inside the symmetric subspace. [less ▲]

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See detailGeneration of total angular momentum eigenstates in remote qubits
Maser, A.; Schilling, U.; Bastin, Thierry ULg et al

Poster (2009)

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See detailGeneration of total angular momentum eigenstates in remote qubits
Maser, A.; Schilling, U.; Bastin, Thierry ULg et al

Poster (2009)

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See detailQuantum imaging using single photon sources
von Zanthier, J.; Thiel, C.; Bastin, Thierry ULg et al

Poster (2009)

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See detailQuantum State Construction of Matter Qubits via Projective Measurements
von Zanthier, J.; Maser, A.; Schilling, U. et al

Conference (2009)

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See detailWave-particle duality in a two atom interferometer
Schilling, U.; Thiel, C.; Bastin, Thierry ULg et al

Poster (2009)

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See detailOperational monitoring of multi-qubit entanglement classes with trapped ions
Bastin, Thierry ULg; Thiel, C.; von Zanthier, J. et al

Conference (2008)

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See detailInteraction-free Generation of Angular Momentum Eigenstates in Remote Qubits
Thiel, C.; Maser, A.; Bastin, Thierry ULg et al

Poster (2008)

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See detailQuantum imaging with single photon sources
Thiel, C.; Bastin, Thierry ULg; von Zanthier, J. et al

Conference (2008)

Detailed reference viewed: 2 (0 ULg)