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Research Article | Open Access

A novel cubic circular picture fuzzy set framework with Bonferroni mean operators and an illustrative application to quantum computing technology selection

Department of Basic Sciences, AI-Zaytoonah University of Jordan, Amman 11733, Jordan; h.alqawaqneh@zuj.edu.jo
Department of Mathematics, Faculty of Science, The Hashemite University, Zarqa 13133, P.O. box 330127, Jordan; abdallaha_ka@hu.edu.jo
Faculty of Information Technology, Abu Dhabi University, Abu Dhabi United Arab Emirates; Wael.salameh@adu.ac.ae
Department of Mathematics and Statistics, College of Sciences, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 11623, Saudi Arabia; SHDarwaish@imamu.edu.sa
Departments of Mathematics, The University of Agriculture, Dera Ismail Khan, Pakistan; zeeshan.msc08@gmail.com
Independent Researcher, (not affiliated with any university or research institute) Tokyo, Japan; Takaaki.fujita060@gmail.com
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Abstract

Capturing hesitation and uncertainty in decision-making (DM) problems remains a critical challenge in many real-world applications. The picture fuzzy set (P-FS) model significantly represents positive, neutral, and negative information, and interval-valued PFSs (IVP-FSs) support additional flexibility by enabling interval-based evaluations. However, these approaches may still lack the ability to effectively model multilayered uncertainty and fluctuations of expert assessments. To handle such situations, the proposed study established an innovative fuzzy approach that combines P-FSs, IVP-FSs, and a radius parameter within a unified framework. The proposed model was termed cubic circular picture fuzzy sets (CuCP-FSs). In this proposed approach, the combination of P-FSs and IVP-FSs was crucial for capturing multilayered uncertainty, and the radius parameter represents the degree of reliability or fluctuations around the P-FS information. Several fundamental set-theoretic operations were demonstrated for the proposed CuCP-FSs framework. Moreover, Bonferroni operational laws were presented, and the corresponding aggregation operators (AOs) were designed to efficiently integrate assessment information. The essential characteristics of the proposed AOs are also investigated to ensure their validity. A multi-criteria decision-making (MCDM) technique was constructed based on these developments within the environment of CuCP-FSs. The proposed technique was employed for applications in the selection of quantum computing technology, presenting the effectiveness and practicality of the proposed MCDM approach. Furthermore, a comparative analysis with several existing fuzzy approaches was examined, which reflects the robustness and reliability of the newly defined CuCP-FS model in presenting complex uncertain information.

CLC number: 03E72, 28E10, 90B50, 94D05

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AIMS Mathematics
Pages 14412-14456

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Cite this article:
Qawaqneh H, Shihadeh A, Salameh WMM, et al. A novel cubic circular picture fuzzy set framework with Bonferroni mean operators and an illustrative application to quantum computing technology selection. AIMS Mathematics, 2026, 11(5): 14412-14456. https://doi.org/10.3934/math.2026591

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Received: 16 March 2026
Revised: 22 April 2026
Accepted: 24 April 2026
Published: 15 May 2026
©2026 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)