23 citations · 93 across the 16 of their papers we have counts for
4 papers · 1 filter
Entanglement Distance of Two- and Multi-Qubit Variational States and Its Quantification with Quantum Computing
Kh. P. Gnatenko, R. O. Hredil, V. Y. Pinchuk +2
We study the entanglement distance of variational quantum states for two-qubit and multi-qubit systems. These states are constructed using variational quantum circuits with r…
Entanglement of multi-qubit quantum graph states and studies structural properties of tripartite graphs with quantum programming
Kh. P. Gnatenko
We propose a method for constructing multi-qubit entangled quantum states representing weighted tripartite graphs. An expression for the entanglement distance for multi-qubit state…
Properties of multi-qubit variational quantum states representing weighted graphs and their computing with quantum programming
Kh. P. Gnatenko, A. Kaczmarek
We study multi-qubit variational quantum states that can be considered as vertex- and edge-weighted graph. These states are constructed as single-layer variational circuits with $R…
Quantifying the properties of evolutionary quantum states of the XXZ spin model using quantum computing
M. P. Tonne, Kh. P. Gnatenko
The entanglement distance of evolutionary quantum states of a two-spin system with the XXZ model has been studied. The analysis has been conducted both analytically and using quant…