Risultati della ricerca - quantum code optimization

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  1. 1

    Almost linear decoder for optimal geometrically local quantum codes di Quinten Eggerickx, Adam Wills, Ting-Chun Lin, Kristiaan De Greve, Min-Hsiu Hsieh

    Pubblicazione 2025-06-01

    Geometrically local quantum codes, which are error-correction codes embedded in R^{D} with checks acting only on qubits within a fixed spatial distance, have garnered significant interest. Recently, it has been demonstrated how to achieve geometrically local codes that maximize both the dimension an...

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    “...Geometrically local quantum codes, which are error-correction codes embedded in R^{D} with checks acting only on qubits within a fixed spatial distance, have garnered significant interest. ...”
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  2. 2

    Compiler-assisted code generation for quantum computing: leveraging the unique properties of quantum architectures di G. G. James, A. P. Ekong, A. U. Unyime, A. Akpanobong, J. A. Odey, D. O. Egete, S. Inyang, I. Ohaeri, C. M. Orazulume, E. Etuk, P. Okafor

    Pubblicazione 2025-05-01

    Quantum computing holds transformative potential, but its adoption is hindered by the complexity of generating efficient, hardware-specific code. This work presents a modular, extensible compiler framework that bridges high-level quantum languages with diverse hardware architectures. The framework...

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  3. 3

    Developing and Analyzing the Defect-Based Surface Codes Using Optimization Algorithms di Samira Sayedsalehi, Nader Bagherzadeh, Alberto A. Del Barrio, Guillermo Botella, Ratko Pilipović

    Pubblicazione 2025-05-01

    Fault tolerance is crucial for enabling large-scale quantum computations, with surface codes emerging as prominent error correction techniques due to their high error threshold and reliance on nearest-neighbor interactions. Despite the advantages of surface codes, they demand a substantial number of...

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    “...Fault tolerance is crucial for enabling large-scale quantum computations, with surface codes emerging as prominent error correction techniques due to their high error threshold and reliance on nearest-neighbor interactions. ...”
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  4. 4

    Optimal Energy Management of Microgrids using Quantum Teaching Learning Based Algorithm di Zahra Esmaeili, Seyed Hamid Hosseini

    Pubblicazione 2023-12-01

    The most important challenge in microgrids is the coordination of distributed energy resources (DERs), due to the existence of several DERs with fugacious characteristics. In this paper, a robust frame associated with a quantum version of the Teaching-Learning-Based Optimization (quantum TLBO) algor...

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    “...In this paper, a robust frame associated with a quantum version of the Teaching-Learning-Based Optimization (quantum TLBO) algorithm is proposed for the first time for the microgrid optimal energy management problem. ...”
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  5. 5

    An Efficient Continuous-Variable Quantum Key Distribution with Parameter Optimization Using Elitist Elk Herd Random Immigrants Optimizer and Adaptive Depthwise Separable Convolutio... di Vidhya Prakash Rajendran, Deepalakshmi Perumalsamy, Chinnasamy Ponnusamy, Ezhil Kalaimannan

    Pubblicazione 2025-07-01

    Quantum memory is essential for the prolonged storage and retrieval of quantum information. Nevertheless, no current studies have focused on the creation of effective quantum memory for continuous variables while accounting for the decoherence rate. This work presents an effective continuous-variabl...

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    “...This work presents an effective continuous-variable quantum key distribution method with parameter optimization utilizing the Elitist Elk Herd Random Immigrants Optimizer (2E-HRIO) technique. ...”
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  6. 6

    Semi-Device-Independent Randomness Expansion Using <i>n</i>→1 Parity-Oblivious Quantum Random Access Codes di Xunan Wang, Xu Chen, Mengke Xu, Wanglei Mi, Xiao Chen

    Pubblicazione 2025-06-01

    Quantum mechanics enables the generation of genuine randomness through its intrinsic indeterminacy. In device-independent (DI) and semi-device-independent (SDI) frameworks, randomness generation protocols can further ensure that the output remains secure and unaffected by internal device imperfectio...

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    “...In this work, we propose an SDI randomness expansion protocol using <inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><mrow><mi>n</mi><mspace width="-0.166667em"></mspace><mspace width="-0.166667em"></mspace><mo>→</mo><mspace width="-0.166667em"></mspace><mspace width="-0.166667em"></mspace><mn>1</mn></mrow></semantics></math></inline-formula> parity-oblivious quantum random access code (PO-QRAC), where the presence of true quantum randomness is certified through the violation of a two-dimensional quantum witness. ...”
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  7. 7

    Multi-Party Controlled Semi-Quantum Dialogue Protocol Based on Hyperentangled Bell States di Meng-Na Zhao, Ri-Gui Zhou, Yun-Hao Feng

    Pubblicazione 2025-06-01

    To solve the fundamental problem of excessive consumption of classical resources and the simultaneous security vulnerabilities in semi-quantum dialogue systems, a multi-party controlled semi-quantum dialogue protocol based on hyperentangled Bell states is proposed. A single controlling party is vuln...

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    “...This encoding mechanism assigns values to each character by constructing a Huffman tree, generating optimal prefix codes that significantly optimize the storage space complexity for the classical participant. ...”
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  8. 8

    Circuit-level fault tolerance of cat codes di Long D. H. My, Shushen Qin, Hui Khoon Ng

    Pubblicazione 2025-07-01

    Bosonic codes encode quantum information into a single infinite-dimensional physical system endowed with error correction capabilities. This reduces the need for complex management of many physical constituents compared with standard approaches employing multiple physical qubits. Recent discussions...

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    “...Bosonic codes encode quantum information into a single infinite-dimensional physical system endowed with error correction capabilities. ...”
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  9. 9

    Optimization of DD-110 Neutron Generator Output for Boron Neutron Capture Therapy Using Monte Carlo Simulation di Hossam Donya, Muhammed Umer

    Pubblicazione 2025-04-01

    Boron neutron capture therapy (BNCT) is a specialized cancer treatment that leverages the high absorption cross-section of boron for thermal neutrons. When boron captures neutrons, it undergoes a nuclear reaction that produces alpha particles and lithium ions, which have high linear energy transfer...

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  10. 10

    Low-Overhead Magic State Distillation with Color Codes di Seok-Hyung Lee, Felix Thomsen, Nicholas Fazio, Benjamin J. Brown, Stephen D. Bartlett

    Pubblicazione 2025-07-01

    Fault-tolerant implementation of non-Clifford gates is a major challenge for achieving universal fault-tolerant quantum computing with quantum error-correcting codes. Magic state distillation is the most well-studied method for this but requires significant resources. Hence, it is crucial to tailor...

    Descrizione completa

    “...Fault-tolerant implementation of non-Clifford gates is a major challenge for achieving universal fault-tolerant quantum computing with quantum error-correcting codes. ...”
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  11. 11

    Performance and Achievable Rates of the Gottesman-Kitaev-Preskill Code for Pure-Loss and Amplification Channels di Guo Zheng, Wenhao He, Gideon Lee, Kyungjoo Noh, Liang Jiang

    Pubblicazione 2025-07-01

    Quantum error-correction codes protect information from realistic noisy channels and lie at the heart of quantum computation and communication tasks. Understanding the optimal performance and other information-theoretic properties, such as the achievable rates, of a given code is crucial, as these f...

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    “...Quantum error-correction codes protect information from realistic noisy channels and lie at the heart of quantum computation and communication tasks. ...”
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  12. 12

    A Practical Performance Benchmark of Post-Quantum Cryptography Across Heterogeneous Computing Environments di Maryam Abbasi, Filipe Cardoso, Paulo Váz, José Silva, Pedro Martins

    Pubblicazione 2025-05-01

    The emergence of large-scale quantum computing presents an imminent threat to contemporary public-key cryptosystems, with quantum algorithms such as Shor’s algorithm capable of efficiently breaking RSA and elliptic curve cryptography (ECC). This vulnerability has catalyzed accelerated standardizatio...

    Descrizione completa

    “...The emergence of large-scale quantum computing presents an imminent threat to contemporary public-key cryptosystems, with quantum algorithms such as Shor’s algorithm capable of efficiently breaking RSA and elliptic curve cryptography (ECC). ...”
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  13. 13

    Comparative analysis of NTRUEncrypt modified post-quantum cryptographic system and standard RSA cryptosystem di P. V. Razumov, I. A. Smirnov, I. A. Pilipenko, A. V. Selyova, L. V. Cherkesova

    Pubblicazione 2019-06-01

    Introduction. The NTRUEncrypt cryptographic system, the calculation of the algorithmic complexity of the development of the NTRUEncrypt cryptosystem and its modifications are considered. The study objectives are to develop NTRUEncrypt, an efficient post-quantum cryptographic algorithm, which has hig...

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    “...The study objectives are to develop NTRUEncrypt, an efficient post-quantum cryptographic algorithm, which has high cryptographic resistance to quantum computer attacks, to work out a modification of the proposed algorithm, to analyze and experimentally validate its advantages.Materials and Methods. ...”
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  14. 14

    A dual-phase deep learning framework for advanced phishing detection using the novel OptSHQCNN approach di Srikanth Meda, Vangipuram Sesha Srinivas, Killi Chandra Bhushana Rao, Repudi Ramesh, Narasimha Rao Yamarthi

    Pubblicazione 2025-07-01

    Background Phishing attacks are now regarded as one of the most prevalent cyberattacks that often compromise the security of different communication and internet networks. Phishing websites are created with the goal of generating cyber threats in order to ascertain the user’s financial information....

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    “...The convolutional block attention module (CBAM) then extracts the main characteristics from web page code and linkages. The red kite optimization algorithm (RKOA) selects the significant key attributes in the third stage. ...”
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  15. 15

    Decoherence and Wave-Function Deformation of D_{4} Non-Abelian Topological Order di Pablo Sala, Jason Alicea, Ruben Verresen

    Pubblicazione 2025-07-01

    The effect of decoherence on topological order (TO) has been most deeply understood for the toric code, the paragon of Abelian TOs. We show that certain non-Abelian TOs can be analyzed and understood to a similar degree, despite being significantly richer. We consider both wave-function deformations...

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    “...We consider both wave-function deformations and quantum channels acting on D_{4} TO, which has recently been realized on a quantum processor. ...”
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  16. 16

    Micro-scale molten salt and metal reactor for space applications di Jaehyun Ryu, Yonghee Kim

    Pubblicazione 2025-11-01

    This paper introduces a novel reactor concept called Molten Salt Metal Reactor (MSMR), specifically designed for space applications. This innovative reactor leverages a uranium alloy liquid metal as fuel, integrating the advantages of traditional Molten Salt Reactors (MSRs) while achieving criticali...

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  17. 17

    Molecular modeling of the interaction of the dihydroquercetin and its metabolites with cyclooxygenase-2 di R. P. Terekhov, I. A. Selivanova

    Pubblicazione 2019-10-01

    Background. Dihydroquercetin (DHQ) is a natural flavonoid. It has a wide range of pharmacological effects, which includes anti-inflammatory activity. There is a gap in our knowledge about the biochemical mechanisms of the therapeutic potency implementation of this compound. This fact slows down the...

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    “...It gives an opportunity to optimize the quantum-mechanical calculation. By using in silico analysis, it was shown that DHQ and some of its metabolites demonstrate ability of binding to SER353, SER530, and ARG513 of COX-2 at the catalytic site.Conclusion. ...”
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