No-Go Theorems for Universal Entanglement Purification
arXiv:2407.21760 · doi:10.1103/PhysRevLett.134.190803
Abstract
An entanglement purification protocol (EPP) aims to transform multiple noisy entangled states into a single entangled state with higher fidelity. In this work we consider EPPs that always yield an output fidelity no worse than each of the original noisy states, a property we call universality. We prove there is no -to-1 EPP implementable by local operations and classical communication that is universal for all two-qubit entangled states, whereas such an EPP is possible using more general positive partial transpose-preserving (PPT) operations. We also show that universality is not possible by bilocal Clifford EPPs even when restricted to states with fidelities above an arbitrarily high threshold.
Close to published version
References in corpus (58)
- Quantum entanglement
- The Quantum Internet
- Measurement-based quantum computation with cluster states
- Improved Simulation of Stabilizer Circuits
- Universal Quantum Computation with ideal Clifford gates and noisy ancillas
- Quantum Resource Theories
- Exact and Approximate Unitary 2-Designs: Constructions and Applications
- Dynamically protected cat-qubits: a new paradigm for universal quantum computation
- Quantum repeaters: From quantum networks to the quantum internet
- Quantum Internet: Networking Challenges in Distributed Quantum Computing
- Efficient long distance quantum communication
- The Kerr-Cat Qubit: Stabilization, Readout, and Gates
- Everything You Always Wanted to Know About LOCC (But Were Afraid to Ask)
- Entanglement Distillation between Solid-State Quantum Network Nodes
- Magic state distillation with low overhead
- Quantum certification and benchmarking
- Entanglement purification and quantum error correction
- Fluctuations of Energy-Relaxation Times in Superconducting Qubits
- Decoherence benchmarking of superconducting qubits
- Quantum Repeater with Encoding
- Multi-parameter estimation in networked quantum sensors
- Ultrafast and Fault-Tolerant Quantum Communication across Long Distances
- Long-distance entanglement purification for quantum communication
- Symmetrised Characterisation of Noisy Quantum Processes
- Towards a Distributed Quantum Computing Ecosystem
- Exponential suppression of bit-flips in a qubit encoded in an oscillator
- Multiparticle entanglement purification for graph states
- From quantum fusiliers to high-performance networks
- Efficient learning of quantum noise
- Surface code quantum communication
- Optimal teleportation with a mixed state of two qubits
- Theory of quantum system certification: a tutorial
- Multiparticle entanglement purification for two-colorable graph states
- Optimizing practical entanglement distillation
- Entanglement purification for Quantum Computation
- Hadamard-free circuits expose the structure of the Clifford group
- Standard forms of noisy quantum operations via depolarization
- Optimized Entanglement Purification
- No-Go Theorems for Quantum Resource Purification
- Experimental Single-Copy Entanglement Distillation
- Entanglement purification protocols for all graph states
- Entanglement purification and protection in a superconducting quantum network
- Distilling entanglement from arbitrary resources
- Shorter stabilizer circuits via Bruhat decomposition and quantum circuit transformations
- Separability criteria based on the Bloch representation of density matrices
- No second law of entanglement manipulation after all
- No-go theorems for quantum resource purification II: new approach and channel theory
- Generators and relations for n-qubit Clifford operators
- Policies for elementary links in a quantum network
- Quantum repeater architecture with hierarchically optimized memory buffer times
- On multipartite invariant states I. Unitary symmetry
- Enumerating all bilocal Clifford distillation protocols through symmetry reduction
- Performance metrics for the continuous distribution of entanglement in multi-user quantum networks
- Renormalising entanglement distillation
- Near-term to distillation protocols using graph codes
- Correlated entanglement distillation and the structure of the set of undistillable states
- No-go theorem for entanglement distillation using catalysis
- Improving entanglement purification through coherent superposition of roles
Cited by in corpus (6)
- Quantum Advantage in Distributed Sensing with Noisy Quantum Networks
- Optimality of universal conclusive entanglement concentration protocols
- Power and limitations of distributed quantum state purification
- Basic entanglement distillation with realistic noise
- Distilled remote entanglement between superconducting qubits across optical channels
- Enhancing Quantum Key Distribution with Entanglement Distillation and Classical Advantage Distillation