A resource theory of asynchronous quantum information processing
arXiv:2504.12945 · doi:10.1088/1367-2630/ae49b7
Abstract
In standard quantum teleportation, the receiver must wait for a classical message from the sender before subsequently processing the transmitted quantum information. However, in port-based teleportation (PBT), this local processing can begin before the classical message is received, thereby allowing for asynchronous quantum information processing. Motivated by resource-theoretic considerations and practical applications, we propose different communication models that progressively allow for more powerful decoding strategies while still permitting asynchronous distributed quantum computation, a salient feature of standard PBT. Specifically, we consider PBT protocols augmented by free classical processing and/or different forms of quantum pre-processing, and we investigate the maximum achievable teleportation fidelities under such operations. Our analysis focuses specifically on the PBT power of isotropic states, bipartite graph states, and symmetrized EPR states, and we compute tight bounds on the optimal teleportation fidelities for such states. We finally show that, among this hierarchy of communication models consistent with asynchronous quantum information processing, the strongest resource theory is equally as powerful as any one-way teleportation protocol for surpassing the classical teleportation threshold. Thus, a bipartite state can break the one-way classical teleportation threshold if and only if it can be done using the trivial decoding map of discarding subsystems.
38 pages, 2 figures
References in corpus (50)
- Measurement-based quantum computation with cluster states
- Quantum Resource Theories
- The Entanglement of Formation for Isotropic States
- Asymptotic teleportation scheme as a universal programmable quantum processor
- Optimal quantum learning of a unitary transformation
- High-fidelity quantum logic operations using linear optical elements
- Simplified instantaneous non-local quantum computation with applications to position-based cryptography
- Distilling common randomness from bipartite quantum states
- Fundamental limits to quantum channel discrimination
- Quantum teleportation scheme by selecting one of multiple output ports
- Quantum message compression with applications
- Reversing Unknown Quantum Transformations: Universal Quantum Circuit for Inverting General Unitary Operations
- A Complete Resource Theory of Quantum Incompatibility as Quantum Programmability
- All quantum states useful for teleportation are nonlocal resources
- Optimal probabilistic storage and retrieval of unitary channels
- Quantum communication complexity advantage implies violation of a Bell inequality
- Probabilistic exact universal quantum circuits for transforming unitary operations
- Port-based teleportation in arbitrary dimension
- State discrimination with post-measurement information and incompatibility of quantum measurements
- State Discrimination with Post-Measurement Information
- Optimal Port-based Teleportation
- Optimization and learning of quantum programs
- Convex optimization of programmable quantum computers
- Deterministic transformations between unitary operations: Exponential advantage with adaptive quantum circuits and the power of indefinite causality
- Asymptotic performance of port-based teleportation
- Complexity and entanglement in non-local computation and holography
- Efficient multi port-based teleportation schemes
- Generalized teleportation and entanglement recycling
- Resource Quantification for the No-Programming Theorem
- Simplified formalism of the algebra of partially transposed permutation operators with applications
- Characterising port-based teleportation as a universal simulator of qubit channels
- Generalization of port-based teleportation and controlled teleportation capability
- Multiport based teleportation -- transmission of a large amount of quantum information
- Higher-dimensional performance of port-based teleportation
- Optimality of the pretty good measurement for port-based teleportation
- Optimal Multi-port-based Teleportation Schemes
- Incompatibility as a resource for programmable quantum instruments
- On the Duality of Teleportation and Dense Coding
- Quantum Bell Nonlocality is Entanglement
- Deduction of an upper bound on the success probability of port-based teleportation from the no-cloning theorem and the no-signaling principle
- Minimal Port-based Teleportation
- Maximally-Disordered Distillable Quantum States
- Continuous variable port-based teleportation
- Storage and retrieval of von Neumann measurements
- Port-based entanglement teleportation via noisy resource states
- Teleportation of Post-Selected Quantum States
- Port-Based State Preparation and Applications
- From port-based teleportation to Frobenius reciprocity theorem: partially reduced irreducible representations and their applications
- Port-based telecloning of an unknown quantum state
- Asymptotic teleportation schemes bridging between standard and port-based teleportation