We describe a system for long-distance distribution of quantum entanglement, in which coherent light with large average photon number interacts dispersively with single, far-detuned atoms or semiconductor impurities in optical cavities. Entanglement is heralded by homodyne detection using a second bright light pulse for phase reference. The use of bright pulses leads to a high success probability for the generation of entanglement, at the cost of a lower initial fidelity. This fidelity may be boosted by entanglement purification techniques, implemented with the same physical resources. The need for more purification steps is well compensated for by the increased probability of success when compared to heralded entanglement schemes using sin...
The output fields of a pair of coherently coupled nonlinear optical cavities are found to exhibit st...
Entanglement swapping and heralding are at the heart of many protocols for distributed quantum infor...
The strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...
Individual atoms in optical cavities can provide an efficient interface between stationary qubits an...
The problem of long-distance teleportation of single-atom qubits via a common photonic channel is ex...
We study the possible limitations and sources of decoherence in the scheme for the deterministic gen...
Recent proposals and advances in quantum simulations, quantum cryptography, and quantum communicatio...
Quantum communication deals with absolutely secure transfer of classical messages by means of quantu...
The distribution of entangled states of light over long distances is a major challenge in the field ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
We propose a scheme of loss-resilient entanglement swapping between two distant parties in lossy opt...
Entangled photons are ideally suited to the transmission of photonic quantum information. Mitigating...
Distributing and sharing entanglement at a distance is a key ingredient in many future quantum commu...
The output fields of a pair of coherently coupled nonlinear optical cavities are found to exhibit st...
Entanglement swapping and heralding are at the heart of many protocols for distributed quantum infor...
The strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...
Individual atoms in optical cavities can provide an efficient interface between stationary qubits an...
The problem of long-distance teleportation of single-atom qubits via a common photonic channel is ex...
We study the possible limitations and sources of decoherence in the scheme for the deterministic gen...
Recent proposals and advances in quantum simulations, quantum cryptography, and quantum communicatio...
Quantum communication deals with absolutely secure transfer of classical messages by means of quantu...
The distribution of entangled states of light over long distances is a major challenge in the field ...
Developments in quantum information science rely critically on entanglement—a fundamental aspect of ...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
We propose a scheme of loss-resilient entanglement swapping between two distant parties in lossy opt...
Entangled photons are ideally suited to the transmission of photonic quantum information. Mitigating...
Distributing and sharing entanglement at a distance is a key ingredient in many future quantum commu...
The output fields of a pair of coherently coupled nonlinear optical cavities are found to exhibit st...
Entanglement swapping and heralding are at the heart of many protocols for distributed quantum infor...
The strong-coupling regime of cavity-quantum-electrodynamics (cQED) represents the light-matter inte...