Measurement-based Quantum Communication
arXiv:1506.00985 · doi:10.1007/s00340-015-6285-8
Abstract
We review and discuss the potential of using measurement-based elements in quantum communication schemes, where certain tasks are realized with the help of entangled resource states that are processed by measurements. We consider long-range quantum communication based on the transmission of encoded quantum states, where encoding, decoding and syndrome read-out are implemented using small-scale resource states. We also discuss entanglement-based schemes and consider measurement-based quantum repeaters. An important element in these schemes is entanglement purification, which can also be implemented in a measurement-based way. We analyze the influence of noise and imperfections in these schemes, and show that measurement-based implementation allows for very large error thresholds of the order of 10\% noise per qubit and more. We show how to obtain optimal resource states for different tasks, and discuss first experimental realizations of measurement-based quantum error correction using trapped ions and photons.
13 pages, 4 figures; review article - contribution to Applied Physics B: Topical Issue on Quantum Repeaters
References in corpus (12)
- The Quantum Internet
- Quantum States and Phases in Driven Open Quantum Systems with Cold Atoms
- Multi-party entanglement in graph states
- Fault-tolerant quantum computation with high threshold in two dimensions
- Resource-efficient linear optical quantum computation
- High-speed linear optics quantum computing using active feed-forward
- Entanglement purification and quantum error correction
- Percolation, renormalization, and quantum computing with non-deterministic gates
- On the role of memory errors in quantum repeaters
- Entanglement purification protocols for all graph states
- New lower bounds on the non-zero capacity of Pauli Channels
- Potential and limits to cluster state quantum computing using probabilistic gates
Cited by in corpus (36)
- Quantum repeaters: From quantum networks to the quantum internet
- Quantum Communication Using Semiconductor Quantum Dots
- Sequential generation of linear cluster states from a single photon emitter
- Deterministic generation of all-photonic quantum repeaters from solid-state emitters
- A measurement-based variational quantum eigensolver
- Practical figures of merit and thresholds for entanglement distribution in quantum networks
- Sequential generation of multiphoton entanglement with a Rydberg superatom
- Long-range big quantum-data transmission
- Fundamental building block for all-optical scalable quantum networks
- Resource requirements for efficient quantum communication using all-photonic graph states generated from a few matter qubits
- Two dimensional quantum repeaters
- Entanglement-assisted entanglement purification
- Efficient entanglement purification protocols for d-level systems
- Quantum NETwork: from theory to practice
- Role of syndrome information on a one-way quantum repeater using teleportation-based error correction
- Policies for elementary links in a quantum network
- One way quantum repeaters with quantum Reed-Solomon codes
- Multidimensional cluster states using a single spin-photon interface coupled strongly to an intrinsic nuclear register
- Measurement-Based Quantum Computation
- Entanglement purification by counting and locating errors with entangling measurements
- Quantum Repeater for W states
- Measurement based quantum communication with resource states generated by entanglement purification
- ReQuSim: Faithfully simulating near-term quantum repeaters
- On the design and analysis of near-term quantum network protocols using Markov decision processes
- Deterministic generation of qudit photonic graph states from quantum emitters
- Estimation of coherent error sources from stabilizer measurements
- Measurement-based infused circuits for variational quantum eigensolvers
- Remotely Controlled Entanglement Generation
- Modular architectures to deterministically generate graph states
- Optimization of deterministic photonic graph state generation via local operations
- High-dimensional monitoring and the emergence of realism via multiple observers
- Construction of optimal resources for concatenated quantum protocols
- Efficient entanglement purification based on noise guessing decoding
- Measurement-Based Entanglement Distillation and Constant-Rate Quantum Repeaters over Arbitrary Distances
- Simple proof of confidentiality for private quantum channels in noisy environments
- Loss-tolerant concatenated Bell-state measurement with encoded coherent-state qubits for long-range quantum communication