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Article

New Permutation-Free Quantum Circuits for Implementing 3- and 4-Qubit Unitary Operations

by
Artyom M. Grigoryan
Department of Electrical and Computer Engineering, The University of Texas at San Antonio, San Antonio, TX 78249, USA
Information 2025, 16(7), 621; https://doi.org/10.3390/info16070621
Submission received: 10 June 2025 / Revised: 6 July 2025 / Accepted: 15 July 2025 / Published: 21 July 2025

Abstract

The article presents the quantum signal-induced heap transform (QsiHT) method of the QR-decomposition of multi-qubit operations. This transform can be generated by a given signal, by using different paths, or orders, of processing the data. We propose using the concept of the fast path of calculation of the QsiHT and applying such transforms on each stage of the matrix decomposition. This allows us to build quantum circuits for multi-qubit unitary operation without permutations. Unitary operations with real and complex matrices are considered. The cases of 3- and 4-qubit operations are described in detail with quantum circuits. These circuits use a maximum of 28 and 120 Givens rotation gates for 3- and 4-qubit real operations, respectively. All rotations are performing only on adjacent bit planes. For complex unitary operation, each of the Givens gates is used in pairs with two Z-rotation gates. These two types of rotations and the global phase gate are the universal gate set for multi-qubit operations. The presented approach can be used for implementing quantum circuits for n-qubits when n2, with a maximum of (4n/22n1) Givens rotations and no permutations.
Keywords: Quantum QR decomposition; Givens rotation; quantum signal-induced heap transform Quantum QR decomposition; Givens rotation; quantum signal-induced heap transform
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MDPI and ACS Style

Grigoryan, A.M. New Permutation-Free Quantum Circuits for Implementing 3- and 4-Qubit Unitary Operations. Information 2025, 16, 621. https://doi.org/10.3390/info16070621

AMA Style

Grigoryan AM. New Permutation-Free Quantum Circuits for Implementing 3- and 4-Qubit Unitary Operations. Information. 2025; 16(7):621. https://doi.org/10.3390/info16070621

Chicago/Turabian Style

Grigoryan, Artyom M. 2025. "New Permutation-Free Quantum Circuits for Implementing 3- and 4-Qubit Unitary Operations" Information 16, no. 7: 621. https://doi.org/10.3390/info16070621

APA Style

Grigoryan, A. M. (2025). New Permutation-Free Quantum Circuits for Implementing 3- and 4-Qubit Unitary Operations. Information, 16(7), 621. https://doi.org/10.3390/info16070621

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