On the waiting time in quantum repeaters with probabilistic entanglement swapping
arXiv:1710.06214 · doi:10.1103/PhysRevA.100.032322
Abstract
The standard approach to realize a quantum repeater relies upon probabilistic but heralded entangled state manipulations and the storage of quantum states while waiting for successful events. In the literature on this class of repeaters, calculating repeater rates has typically depended on approximations assuming sufficiently small probabilities. Here we propose an exact and systematic approach including an algorithm based on Markov chain theory to compute the average waiting time (and hence the transmission rates) of quantum repeaters with arbitrary numbers of links. For up to four repeater segments, we explicitly give the exact rate formulae for arbitrary entanglement swapping probabilities. Starting with three segments, we explore schemes with arbitrary (not only doubling) and dynamical (not only predetermined) connections. The effect of finite memory times is also considered and the relative influence of the classical communication (of heralded signals) is shown to grow significantly for larger probabilities. Conversely, we demonstrate that for small swapping probabilities the statistical behavior of the waiting time in a quantum repeater cannot be characterized by its average value alone and additional statistical quantifiers are needed. For large repeater systems, we propose a recursive approach based on exactly but still efficiently computable waiting times of sufficiently small sub-repeaters. This approach leads to better lower bounds on repeater rates compared to existing schemes.
23 pages, 12 figures
References in corpus (11)
- Distributed Quantum Computation Based-on Small Quantum Registers
- Multiplexed Memory-Insensitive Quantum Repeaters
- 3/4-efficient Bell measurement with passive linear optics and unentangled ancillae
- Experimental realization of a multiplexed quantum memory with 225 individually accessible memory cells
- Rate analysis for a hybrid quantum repeater
- Hybrid entanglement of three quantum memories with three photons
- Quantum repeaters with individual rare-earth ions at telecommunication wavelengths
- Focus on Quantum Memories
- Memory-Assisted Quantum Key Distribution with a Single Nitrogen Vacancy Center
- Quantum repeater architecture with hierarchically optimized memory buffer times
- Statistical analysis of quantum entangled network generation
Cited by in corpus (43)
- NetSquid, a NETwork Simulator for QUantum Information using Discrete events
- Towards real-world quantum networks: a review
- Tools for quantum network design
- Optimal entanglement swapping in quantum repeaters
- Analysis of Multipartite Entanglement Distribution using a Central Quantum-Network Node
- On the Stochastic Analysis of a Quantum Entanglement Switch
- Simulating quantum repeater strategies for multiple satellites
- Optimising repeater schemes for the quantum internet
- Optimal entanglement distribution policies in homogeneous repeater chains with cutoffs
- Symmetries in quantum networks lead to no-go theorems for entanglement distribution and to verification techniques
- Improved analytical bounds on delivery times of long-distance entanglement
- Near-term performance of quantum repeaters with imperfect ensemble-based quantum memories
- Policies for elementary links in a quantum network
- A Throughput Optimal Scheduling Policy for a Quantum Switch
- Fast and reliable entanglement distribution with quantum repeaters: principles for improving protocols using reinforcement learning
- Memory-assisted long-distance phase-matching quantum key distribution
- Deep reinforcement learning for key distribution based on quantum repeaters
- Entanglement Distribution in the Quantum Internet: Knowing when to Stop!
- ReQuSim: Faithfully simulating near-term quantum repeaters
- On the design and analysis of near-term quantum network protocols using Markov decision processes
- Entanglement Swapping in Quantum Switches: Protocol Design and Stability Analysis
- Certifying the Topology of Quantum Networks: Theory and Experiment
- Rate limits in quantum networks with lossy repeaters
- Aging and Reliability of Quantum Networks
- Reducing classical communication costs in multiplexed quantum repeaters using hardware-aware quasi-local policies
- On the Quantum Performance Evaluation of Two Distributed Quantum Architectures
- Entanglement Swapping for Repeater Chains with Finite Memory Sizes
- Entanglement buffering with two quantum memories
- Simulation of fidelity in entanglement-based networks with repeater chains
- Stability Analysis of a Quantum Network with Max-Weight Scheduling
- Analytical Performance Estimations for Quantum Repeater Network Scenarios
- On noise in swap ASAP repeater chains: exact analytics, distributions and tight approximations
- Diagrammatic technique for simulation of large-scale quantum repeater networks with dissipating quantum memories
- Continuously Distributing Entanglement in Quantum Networks with Regular Topologies
- Optimization of Quantum-Repeater Networks using Stochastic Automatic Differentiation
- Statistical analysis of Multipath Entanglement Purification in Quantum Networks
- Memory-corrected quantum repeaters with adaptive syndrome identification
- Optimising entanglement distribution policies under classical communication constraints assisted by reinforcement learning
- Quantum Internet: Resource Estimation for Entanglement Routing
- A resource- and computationally-efficient protocol for multipartite entanglement distribution in Bell-pair networks
- Queue-Channel Capacities with Generalized Amplitude Damping
- Parallel Segment Entanglement Swapping
- Optimal Interpolation of Entanglement Purification Protocols