Geometrical analysis of physically allowed quantum cloning transformations for quantum cryptography
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Publication:508673
DOI10.1016/j.ins.2014.07.010zbMath1355.81069OpenAlexW1983656577MaRDI QIDQ508673
Publication date: 7 February 2017
Published in: Information Sciences (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ins.2014.07.010
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Cites Work
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- A transitivity analysis of bipartite rankings in pairwise multi-class classification
- The Pólya information divergence
- Results on residual Rényi entropy of order statistics and record values
- A history of graph entropy measures
- On minimum Fisher information distributions with restricted support and fixed variance
- Properties of a hierarchical network based on the star graph
- Markov property in quantum logic: A reflection
- Existence of states on quantum structures
- Optimality of the Delaunay triangulation in \(\mathbb{R}^ d\)
- Superactivation of quantum channels is limited by the quantum relative entropy function
- Coherent eavesdropping strategies for the four state quantum cryptography protocol.
- Rényi entropy rate for Gaussian processes
- On the smallest enclosing information disk
- The correlation conversion property of quantum channels
- Quantum information theory and quantum statistics.
- Algorithmic superactivation of asymptotic quantum capacity of zero-capacity quantum channels
- General formulas for capacity of classical-quantum channels
- APPROXIMATING SMALLEST ENCLOSING BALLS WITH APPLICATIONS TO MACHINE LEARNING
- Optimal, reliable estimation of quantum states
- BELL'S INEQUALITIES DETECT EFFICIENT ENTANGLEMENT
- Sided and Symmetrized Bregman Centroids
- Geometries of quantum states
- Fundamentals of Wireless Communication
- Distillation of secret key and entanglement from quantum states
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