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Quantum entanglement offers a unique paradigm for computation, and its potential applications extend beyond quantum computing to various fields, including optimization. This paper investigates the utilization of quantum entanglement within a geometric optimiza…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Quantum entanglement offers a unique paradigm for computation, and its potential applications extend beyond quantum computing to various fields, including optimization. This paper investigates the utilization of quantum entanglement within a geometric optimiza…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Quantum computation stands as a monumental challenge in modern science, demanding unprecedented computational power and adaptability. Traditional qubit representations, while effective, often struggle to handle complex systems and require significant qubit res…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Quantum computation stands as a monumental challenge in modern science, demanding unprecedented computational power and adaptability. Traditional qubit representations, while effective, often struggle to handle complex systems and require significant qubit res…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper introduces a novel adaptive tensor mapping method designed for quantum computing and beyond. Traditional quantum computing optimization often focuses on algorithm design, while this approach dynamically adjusts tensor mappings to precisely control q…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper introduces a novel adaptive tensor mapping method designed for quantum computing and beyond. Traditional quantum computing optimization often focuses on algorithm design, while this approach dynamically adjusts tensor mappings to precisely control q…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential of utilizing quantum computing to dramatically accelerate the simulation of topological dynamical systems. Topological dynamical systems, characterized by their intricate and often complex geometries, pose significant computat…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential of utilizing quantum computing to dramatically accelerate the simulation of topological dynamical systems. Topological dynamical systems, characterized by their intricate and often complex geometries, pose significant computat…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper presents a novel distributed computing algorithm based on quantum entanglement, designed to accelerate the solution of complex mathematical problems. The core concept revolves around utilizing the unique properties of quantum entanglement to achieve…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper presents a novel distributed computing algorithm based on quantum entanglement, designed to accelerate the solution of complex mathematical problems. The core concept revolves around utilizing the unique properties of quantum entanglement to achieve…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential for a synergistic approach between probability logic and quantum computing. The core idea is to leverage the inherent randomness and precision of probability logic engines to guide quantum computations, effectively augmenting …
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential for a synergistic approach between probability logic and quantum computing. The core idea is to leverage the inherent randomness and precision of probability logic engines to guide quantum computations, effectively augmenting …
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential of quantum computation to accelerate computationally intensive tasks by leveraging the principle of quantum state superposition. Traditional parallel computing relies on replicating operations across multiple classical process…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential of quantum computation to accelerate computationally intensive tasks by leveraging the principle of quantum state superposition. Traditional parallel computing relies on replicating operations across multiple classical process…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the integration of dimension reduction techniques, specifically focusing on chaotic field theory, with quantum computation. We propose a novel framework predicated on the inherent properties of chaotic systems, leveraging quantum computatio…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the integration of dimension reduction techniques, specifically focusing on chaotic field theory, with quantum computation. We propose a novel framework predicated on the inherent properties of chaotic systems, leveraging quantum computatio…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Quantum computing, a revolutionary paradigm shift in computation, promises unprecedented computational power. However, the inherent fragility of quantum states necessitates rigorous validation methods to ensure algorithmic correctness and stability. This paper…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Quantum computing, a revolutionary paradigm shift in computation, promises unprecedented computational power. However, the inherent fragility of quantum states necessitates rigorous validation methods to ensure algorithmic correctness and stability. This paper…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper proposes a novel approach to distributed storage system design utilizing quantum error correction (QEC) codes. The core claim is that incorporating QEC allows for robust data redundancy within a distributed system, significantly enhancing data relia…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper proposes a novel approach to distributed storage system design utilizing quantum error correction (QEC) codes. The core claim is that incorporating QEC allows for robust data redundancy within a distributed system, significantly enhancing data relia…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper introduces a novel quantum probability field theory, designed to model and analyze complex quantum systems with a focus on accelerating computation and information processing through the utilization of quantum entanglement and superposition. The cor…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper introduces a novel quantum probability field theory, designed to model and analyze complex quantum systems with a focus on accelerating computation and information processing through the utilization of quantum entanglement and superposition. The cor…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential of utilizing a novel quantum computing architecture based on self-regulated structures. We introduce a new algorithm leveraging self-regulation to enhance quantum computation's precision and efficiency, enabling complex operat…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the potential of utilizing a novel quantum computing architecture based on self-regulated structures. We introduce a new algorithm leveraging self-regulation to enhance quantum computation's precision and efficiency, enabling complex operat…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Quantum entanglement, a cornerstone of quantum mechanics, holds immense potential for revolutionizing computation. This paper explores the development of a novel quantum computing algorithm leveraging the unique properties of quantum entanglement to achieve ad…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Quantum entanglement, a cornerstone of quantum mechanics, holds immense potential for revolutionizing computation. This paper explores the development of a novel quantum computing algorithm leveraging the unique properties of quantum entanglement to achieve ad…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Abstract: Quantum-enhanced simulation of complex dynamical systems presents a significant challenge in scientific research and engineering. Traditional computational methods often struggle to effectively model and analyze intricate systems exhibiting nonlinear…
datacite
Zhang, Jincheng
2026
置信度 0.66
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Abstract: Quantum-enhanced simulation of complex dynamical systems presents a significant challenge in scientific research and engineering. Traditional computational methods often struggle to effectively model and analyze intricate systems exhibiting nonlinear…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper investigates the potential of quantum computing to accelerate combinatorial optimization algorithms. Traditional combinatorial optimization problems, such as the Traveling Salesperson Problem (TSP) and the Integer Linear Programming (ILP), often req…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper investigates the potential of quantum computing to accelerate combinatorial optimization algorithms. Traditional combinatorial optimization problems, such as the Traveling Salesperson Problem (TSP) and the Integer Linear Programming (ILP), often req…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the potential of quantum computing to significantly enhance the computational efficiency of nonlinear topological geometry. We present a novel computational approach, leveraging quantum algorithms, designed to optimize the complex calcu…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper investigates the potential of quantum computing to significantly enhance the computational efficiency of nonlinear topological geometry. We present a novel computational approach, leveraging quantum algorithms, designed to optimize the complex calcu…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the development of a novel algebraic structure, termed the "Dimension Space," as a bridge between linear algebra and non-linear algebra. The core claim is that this framework offers a pathway to understanding and manipulating quantum system…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the development of a novel algebraic structure, termed the "Dimension Space," as a bridge between linear algebra and non-linear algebra. The core claim is that this framework offers a pathway to understanding and manipulating quantum system…
datacite
Zhang, Jincheng
2026
置信度 0.66
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This paper explores the convergence of synthetic intelligence (AI) and quantum computing, unveiling its potential to revolutionize healthcare. By leveraging quantum mechanics' standards, the paper examines how AI may be amplified to gain breakthroughs in clini…
datacite
Banerjee, Nisha, Chatterjee, Koyel
2024
置信度 0.66
Quantum AI; Healthcare; Personalized Medicine; Genomic Analysis; Drug discovery
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preprints
2025
置信度 0.74
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Abstract Quantum computing and quantum Monte Carlo (QMC) are respectively the state-of-the-art quantum and classical computing methods for understanding many-body quantum systems. Here, we propose a hybrid quantum-classical algorithm that integrates these two …
preprints
Xiao Yuan, Yukun Zhang, Yifei Huang, Jinzhao Sun 等
2024
置信度 0.74
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Microwave technology, foundational in quantum computing, utilizes precise control of quantum states via microwave pulses to manage quantum bits (qubits). This review explores the potential of leveraging these principles in neuroscience, where such technology c…
preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2023
置信度 0.74
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Quantum computing represents a paradigm shift in computational power, promising exponential speedups for solving certain classes of problems. However, harnessing the full potential of quantum computers requires effective utilization of data science techniques.…
preprints
Koffka Khan
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2023
置信度 0.74
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Abstract The implementation of Cleve's Protocol, a pioneering approach to securely distribute a secret qutrit among three parties using quantum circuits. Cleve's Protocol ensures that the confidentiality of the qutrit is preserved, and its reconstruction requi…
preprints
PALANIVEL RAJALINGAM
2023
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2024
置信度 0.74
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Abstract Currently, E-commerce is widely adopted as it is important for business management and economic growth in the new global economy, and to reach the rapid increasing population. To better manage the e-commerce, it is important to collect and evaluate th…
preprints
Mohammed Aljaafari
2023
置信度 0.74
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Abstract Quantum evolution is time-reversible and yet little advantage is gained from this in the circuit model of quantum computing. Indeed, most quantum algorithms expressed in the circuit model compute strictly from the present to the future, preparing init…
preprints
Gerardo Ortiz, Jacques Carette, Amr Sabry
2022
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2022
置信度 0.74
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Abstract Quantum computing in biology is one of the most rapidly evolving field of technology. Protein folding is one of the key challenges which requires accurate and efficient algorithms with a quick computational time. Structural conformations of proteins w…
preprints
Akshay Uttarkar, Vidya Niranjan
2023
置信度 0.74
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Abstract The scale-free network in the black hole horizon gives rise to Barrow entropy behavior, which can be visualized geometrically through the Farey diagram. We perform a detailed analysis to demonstrate the quantified values of Barrow entropy. We calculat…
preprints
M. Bousder, Z. Sakhi
2023
置信度 0.74
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preprints
2022
置信度 0.74
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preprints
2022
置信度 0.74
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preprints
2022
置信度 0.74
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While many quantum computing (QC) methods promise theoretical advantages over classical counterparts, quantum hardware remains limited. Exploiting near-term QC in computer-aided drug design (CADD) thus requires judicious partitioning between classical and quan…
preprints
2022
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2024
置信度 0.74
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preprints
2023
置信度 0.74
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Abstract Quantum Mechanics and Computation has a major problem calledthe measurement problem [7] [19]. This has given physicists a very hardtime over the years when I first looked into the problem my approach wassimple find a new number system that can go with…
preprints
Usama Thakur
2022
置信度 0.74
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preprints
2024
置信度 0.74
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Abstract In finance, portfolio optimization aims at finding optimal investments maximizing a trade-off between return and risks, given some constraints. Classical formulations of this quadratic optimization problem have exact or heuristic solutions, but the co…
preprints
Giuseppe Buonaiuto, Francesco Gargiulo, Giuseppe De Pietro, Massimo Esposito 等
2023
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2022
置信度 0.74
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preprints
2021
置信度 0.74
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preprints
2022
置信度 0.74
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preprints
2021
置信度 0.74
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Abstract In modeling the human affective system and applying lessons learned to human‒titrobot interaction, the challenge is to handle ambiguous emotional states of an agency (whether human or artificial), probabilistic decisions, and freedom of choice in affe…
preprints
Johnny K. W. Ho, Johan F. Hoorn
2022
置信度 0.74
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Abstract Quantum computer and computing are areas of theoretical and experimental research having a phase of growth that can generate a tectonic shift of the evolution of technology in society. The scientific and technological development in quantum research i…
preprints
Mario Coccia
2021
置信度 0.74
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preprints
2022
置信度 0.74
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preprints
2021
置信度 0.74
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preprints
2021
置信度 0.74
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preprints
2022
置信度 0.74
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preprints
2021
置信度 0.74
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preprints
2021
置信度 0.74
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preprints
2022
置信度 0.74
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preprints
2023
置信度 0.74
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preprints
2019
置信度 0.74
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preprints
2021
置信度 0.74
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preprints
2018
置信度 0.74
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preprints
2018
置信度 0.74
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preprints
2019
置信度 0.74
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80
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europepmc
2026
置信度 0.80