collaborators

10 papers

quant-ph2026

Transition-aware decomposition of single-qudit gates

Denis A. Drozhzhin, Evgeniy O. Kiktenko, Aleksey K. Fedorov +1

Quantum computation with -level quantum systems, also known as qudits, benefits from the possibility to use a richer computational space compared to qubits. However, for an arbi…

quant-ph2026

On the local equivalence of trapped-ion two-qudit gates

Nikita V. Semenin, Pavel A. Kamenskikh, Ilia V. Zalivako +2

We derive a necessary condition of the local equivalence between two-qudit gates in terms of singular values of transformed gate matrices. This condition is valid for arbitrary qud…

quant-ph2026

Scalable platform for qudit-based quantum computing using polar molecules

Soleh Kh. Muminov, Evgeniy O. Kiktenko, Anastasiia S. Nikolaeva +4

We propose a scalable qudit-based quantum processor using rotational states of polar molecules. Previously, molecular internal states were used to enlarge Hilbert space, whereas ou…

quant-ph2025

Qudit-native simulation of the Potts model

Maksim A. Gavreev, Evgeniy O. Kiktenko, Aleksey K. Fedorov +1

Simulating entangled, many-body quantum systems is notoriously hard, especially in the case of high-dimensional nature of physical underlying objects. In this work, we propose an a…

quant-ph2025

Qudits for decomposing multiqubit gates and realizing quantum algorithms

Evgeniy O. Kiktenko, Anastasiia S. Nikolaeva, Aleksey K. Fedorov

The paradigm behind digital quantum computing inherits the idea of using binary information processing. Nature in fact gives much more rich structures of physical objects that can…

quant-ph2025

Supervised binary classification of small-scale digit images and weighted graphs with a trapped-ion quantum processor

Ilia V. Zalivako, Alexander I. Gircha, Evgeniy O. Kiktenko +14

Here we present the results of benchmarking a quantum processor based on trapped Yb ions by performing basic quantum machine learning algorithms. Using a quantum-enha…