Probabilistic Super Dense Coding
arXiv:quant-ph/0412039 · doi:10.1103/PhysRevA.72.012329
Abstract
We explore the possibility of performing super dense coding with non-maximally entangled states as a resource. Using this we find that one can send two classical bits in a probabilistic manner by sending a qubit. We generalize our scheme to higher dimensions and show that one can communicate 2log_2 d classical bits by sending a d-dimensional quantum state with a certain probability of success. The success probability in super dense coding is related to the success probability of distinguishing non-orthogonal states. The optimal average success probabilities are explicitly calculated. We consider the possibility of sending 2 log_2 d classical bits with a shared resource of a higher dimensional entangled state (D X D, D > d). It is found that more entanglement does not necessarily lead to higher success probability. This also answers the question as to why we need log_2 d ebits to send 2 log_2 d classical bits in a deterministic fashion.
Latex file, no figures, 11 pages, Discussion changed in Section 4
References in corpus (1)
Cited by in corpus (27)
- Perfect Teleportation and Superdense Coding With W-States
- Duality of Quantum Coherence and Path Distinguishability
- Increasing the dimension in high-dimensional two-photon orbital angular momentum entanglement
- The states of W-class as shared resources for perfect teleportation and superdense coding
- Advances in quantum dense coding
- Experimental minimum-error quantum-state discrimination in high dimensions
- Deterministic and Unambiguous Dense Coding
- Experimental Multi-Party Sequential State Discrimination
- Maximum-confidence discrimination among symmetric qudit states
- Simultaneous Dense Coding
- Quantum dense coding scheme via cavity decay
- Experimental scheme for unambiguous discrimination of linearly independent symmetric states
- Quantum Compressed Sensing with Unsupervised Tensor-Network Machine Learning
- Optimal dense coding with arbitrary pure entangled states
- Boundary effect of deterministic dense coding
- Secure -dimensional Simultaneous Dense Coding and Applications
- Optimal probabilistic dense coding schemes
- Non-optimality of unitary operations for dense coding
- Comparison of mixed quantum states
- Deterministic distributed dense coding with stabilizer states
- Coherence based on positive operator-valued measures for standard and concatenated quantum state discrimination with inconclusive results
- Study of controlled dense coding with some discrete tripartite and quadripartite states
- Training quantum measurement devices to discriminate unknown non-orthogonal quantum states
- Operational criterion for controlled dense coding with non-trivial tripartite entangled states
- Design and Analysis of Communication Protocols using Quantum Resources
- The necessary and sufficient condition for perfect teleportation and superdense coding and all the suitable states for teleportation and superdense coding
- Study on Entanglement and its Utility in Information Processing