Calculation of quantum discord for qubit-qudit or N qubits
sai vinjanampathy, A. R. P. Rau

TL;DR
This paper develops analytical formulas to calculate quantum discord for a broad class of qubit-qudit states, including extended X states, simplifying the process and covering larger systems like N-qubits.
Contribution
It introduces two formulas for quantum discord applicable to qubit-qudit systems, including analytical solutions for extended X states and N-qubit systems, expanding the scope beyond small systems.
Findings
Derived two formulas for quantum discord calculation.
Analytical solutions for extended X states.
Numerical evidence shows reduced optimization parameters.
Abstract
Quantum discord, a kind of quantum correlation, is defined as the difference between quantum mutual information and classical correlation in a bipartite system. It has been discussed so far for small systems with only a few independent parameters. We extend here to a much broader class of states when the second party is of arbitrary dimension d, so long as the first, measured, party is a qubit. We present two formulae to calculate quantum discord, the first relating to the original entropic definition and the second to a recently proposed geometric distance measure which leads to an analytical formulation. The tracing over the qubit in the entropic calculation is reduced to a very simple prescription. And, when the d-dimensional system is a so-called X state, the density matrix having non-zero elements only along the diagonal and anti-diagonal so as to appear visually like the letter X,…
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Taxonomy
TopicsQuantum Computing Algorithms and Architecture · Quantum Information and Cryptography · Advanced Thermodynamics and Statistical Mechanics
