Classical capacities of memoryless but not identical quantum channels
From MaRDI portal
Publication:5156087
DOI10.1142/S0129055X21500124zbMath1475.94070arXiv2005.12010OpenAlexW3027308602MaRDI QIDQ5156087
Stefano Mancini, Samad Khabbazi Oskouei
Publication date: 14 October 2021
Published in: Reviews in Mathematical Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2005.12010
Measures of information, entropy (94A17) Channel models (including quantum) in information and communication theory (94A40) Coding theorems (Shannon theory) (94A24) Quantum information, communication, networks (quantum-theoretic aspects) (81P45) Quantum coding (general) (81P70)
Cites Work
- Unnamed Item
- Second-order coding rates for pure-loss bosonic channels
- Position-based coding and convex splitting for private communication over quantum channels
- Quantum capacity under adversarial quantum noise: arbitrarily varying quantum channels
- Erratum to: ``Entanglement transmission and generation under channel uncertainty: universal quantum channel coding
- Entanglement-assisted classical capacities of compound and arbitrarily varying quantum channels
- Second-order asymptotics for quantum hypothesis testing
- QUANTUM HYPOTHESIS TESTING AND NON-EQUILIBRIUM STATISTICAL MECHANICS
- Finite Blocklength Converse Bounds for Quantum Channels
- One-Shot Entanglement-Assisted Quantum and Classical Communication
- Applications of position-based coding to classical communication over quantum channels
- Second-order asymptotics for quantum hypothesis testing in settings beyond i.i.d.—quantum lattice systems and more
- Classical Capacity of Classical-Quantum Arbitrarily Varying Channels
- The Quantum Capacity of Channels With Arbitrarily Correlated Noise
- Convex-Split and Hypothesis Testing Approach to One-Shot Quantum Measurement Compression and Randomness Extraction
- Union bound for quantum information processing
- A Hierarchy of Information Quantities for Finite Block Length Analysis of Quantum Tasks
- Sequential decoding of a general classical-quantum channel
- Quantum Information Theory
This page was built for publication: Classical capacities of memoryless but not identical quantum channels