Entangling capacity and distinguishability of two-qubit unitary operators
arXiv:quant-ph/0502083 · doi:10.1103/PhysRevA.72.042332
Abstract
We prove that the entangling capacity of a two-qubit unitary operator without local ancillas, both with and without the restriction to initial product states, as quantified by the maximum attainable concurrence, is directly related to the distinguishability of a closely related pair of two-qubit unitary operators. These operators are the original operator transformed into its canonical form and the adjoint of this canonical form. The distinguishability of these operators is quantified by the minimum overlap of the output states over all possible input probe states. The entangling capacity of the original unitary operator is therefore directly related to the degree of non-Hermiticity of its canonical form, as quantified in an operationally satisfactory manner in terms of the extent to which it can be distinguished, by measurement, from its adjoint. Furthermore, the maximum entropy of entanglement, again without local ancillas, that a given two-qubit unitary operator can generate, is found to be closely related to the classical capacities of certain quantum channels.
10 pages RevTeX 4, 5 figures. To appear in Physical Review A
References in corpus (2)
Cited by in corpus (14)
- Unambiguous discrimination among quantum operations
- Identification and Distance Measures of Measurement Apparatus
- Unitary transformations can be identified locally
- Characterizing the boundary of the set of absolutely separable states and their generation via noisy environments
- Optimal Entangling Capacity of Dynamical Processes
- Optimal Simulation of a Perfect Entangler
- Resource Theory of Non-absolute Separability
- Decision problems with quantum black boxes
- Correlation between resource-generating capacities of quantum gates
- Characteristics, Implementation and Applications of Special Perfect Entangler Circuits
- Matrix rearrangement approach for the entangling power with mixed qudit systems
- Comparing globalness of bipartite unitary operations: delocalization power, entanglement cost, and entangling power
- Nonlocal characteristics and argand diagram of two-qubit gates
- How much is a quantum controller controlled by the controlled system?