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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
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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
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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
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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
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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
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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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Introduction Multifactorial complex diseases such as cancer, neurodegeneration, and infections are poorly treated with traditional single-target therapies because biological networks are redundant and adaptively resistant. Methods A comprehensive literature re…
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
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europepmc
2026
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europepmc
2026
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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
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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
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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
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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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Quantum computers require quantum logic, something fundamentally different to classical Boolean logic. This difference leads to a greater efficiency of quantum computation over its classical counter-part. In this review we explain the basic principles of quant…
arxiv
Vlatko Vedral, Martin B. Plenio
1998-02-25T17:47:18Z
置信度 0.78
quant-ph
-
Quantum computing is an emerging paradigm with the potential to offer significant computational advantage over conventional classical computing by exploiting quantum-mechanical principles such as entanglement and superposition. It is anticipated that this comp…
arxiv
Sukhpal Singh Gill, Adarsh Kumar, Harvinder Singh, Manmeet Singh 等
2020-09-28T09:15:22Z
置信度 0.78
cs.ETcs.DC
-
Quantum simulation is at the heart of the ongoing "second" quantum revolution, with various synthetic quantum matter platforms realizing evermore exotic condensed matter and particle physics phenomena at high levels of precision and control. The implementation…
arxiv
Jad C. Halimeh, Philipp Hauke
2022-04-28T18:00:01Z
置信度 0.78
cond-mat.quant-gascond-mat.str-elhep-latquant-ph
-
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…
crossref
Usama Thakur
2022-05-11T10:39:08Z
置信度 0.70
-
Abstract Quantum Mechanics and Computation has a major problem called the measurement problem. This has given physicists a very hard time over the years when I first looked into the problem my approach was simple find a new number system that can go with the u…
crossref
Usama Thakur
2022-05-10T17:21:46Z
置信度 0.70
-
We present a comprehensive review of photonic implementations of discrete-time quantum walks (DTQW) in the spatial and temporal domains. Moreover, we introduce a novel scheme for DTQWs using transverse spatial modes of single photons and programmable spatial l…
crossref
Graciana Puentes
2022-02-24T11:54:46Z
置信度 0.70
-
crossref
V K Gupta
2015-03-27T11:23:20Z
置信度 0.70
-
Abstract Quantum computers require precise control over parameters and careful engineering of the underlying physical system. In contrast, neural networks have evolved to tolerate imprecision and inhomogeneity. Here, using a reservoir computing architecture we…
crossref
Sanjib Ghosh, Tanjung Krisnanda, Tomasz Paterek, Timothy Liew
2021-01-14T21:08:15Z
置信度 0.70
-
crossref
R Madhusudhana, K C Navyashree, L Krishnamurthy, R Gopalkrishne Urs
2024-12-07T08:19:06Z
置信度 0.70
-
crossref
2024-09-27T00:04:51Z
置信度 0.70
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crossref
2024-09-27T00:04:51Z
置信度 0.70
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crossref
2024-09-27T00:04:51Z
置信度 0.70
-
crossref
2024-09-27T00:04:51Z
置信度 0.70
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crossref
2024-09-27T00:04:51Z
置信度 0.70
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crossref
2024-09-27T00:04:51Z
置信度 0.70
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crossref
2024-09-27T00:04:51Z
置信度 0.70
-
crossref
Miroslav Ilich
2026-08-10T05:44:34Z
置信度 0.70
-
crossref
2025-10-15T21:05:20Z
置信度 0.70
-
crossref
Amit Kumar Sharma, Ashish Ghunawat
2020-02-03T20:17:08Z
置信度 0.70
-
crossref
B. Aruna Devi, N. Alangudi Balaji, Mulugeta Tesema
2023-07-25T02:54:42Z
置信度 0.70
-
crossref
G. Cybenko
2005-04-21T20:22:11Z
置信度 0.70
-
Computational technologies drive progress in industry, science, government, and society. While these technologies form the foundation for intelligent systems and enable scientific and business innovation, they are also the limiting factors for progress. Quantu…
crossref
Subrata Paul, Anirban Mitra
2022-03-21T08:46:24Z
置信度 0.70
-
crossref
2025-05-07T17:15:44Z
置信度 0.70
-
crossref
2025-10-15T21:05:20Z
置信度 0.70
-
crossref
2025-10-15T21:05:20Z
置信度 0.70
-
crossref
Vaishnavi Gawde, Vanshika Goswami, Balwinder Kaur Dhaliwal, Sunil Parihar 等
2023-10-18T11:30:28Z
置信度 0.70
-
crossref
Seiichiro Tani
2024-03-03T22:15:53Z
置信度 0.70
-
crossref
Anay Sinhal, Dr. Amit Sinhal, Arpana Sinhal
2025-06-20T16:25:57Z
置信度 0.70
-
Modern encryption methods are built upon the fundamentally “uncomfortable” process of computing huge integers to their primes. However, current cryptography is vulnerable to both increases in processing power and the emergence of quickly reversing huge integer…
crossref
K. Muthumanickam, P. C. Senthil Mahesh, Mahmoud Ragab
2023-03-03T09:17:54Z
置信度 0.70
-
crossref
Mario Coccia
2025-04-22T07:32:48Z
置信度 0.70
-
crossref
Abid Hossain Rion, Mashrufa Meghla Any
2025-08-14T15:59:43Z
置信度 0.70
-
crossref
Mukta Nivelkar
2025-03-21T00:14:12Z
置信度 0.70
-
crossref
Mario Coccia
2025-05-06T02:17:46Z
置信度 0.70
-
Abstract Many engineering problems involve solving large linear systems of equations. Conjugate gradient (CG) is one of the most popular iterative methods for solving such systems. However, CG typically requires a good preconditioner to speed up convergence. O…
crossref
Sanjay Suresh, Krishnan Suresh
2023-10-09T08:41:28Z
置信度 0.70
-
crossref
Christos Smiliotopoulos
2025-03-18T04:42:15Z
置信度 0.70
-
crossref
Einstein Chou
2025-03-17T11:57:16Z
置信度 0.70
-
crossref
Shruti Kaushik
2025-05-03T04:32:52Z
置信度 0.70
-
crossref
Ishu Gupta
2025-06-02T01:48:56Z
置信度 0.70
-
crossref
Samya Muhuri
2025-03-27T04:53:31Z
置信度 0.70
-
This work focuses on quantum reservoir computing and, in particular, on quantum Wiener architectures (qWiener), consisting of quantum linear dynamic networks with weak continuous measurements and classical nonlinear static readouts. We provide the first rigoro…
crossref
Alessio Benavoli, Felix C. Binder
2026-06-22T17:21:52Z
置信度 0.70
-
Motivated by the recently demonstrated ability to attach quantum dots to polymers at well-defined locations, we propose a condensed-phase analog of the ion-trap quantum computer: a scheme for quantum computation using chemically assembled semiconductor nanocry…
openalex
K. R. Brown, D. A. Lidar, K. B. Whaley, Kenneth R. Brown 等
2001-12-11
置信度 0.72
Quantum dotQuantumQuantum computerQuantum networkQuantum technology
-
crossref
Mónica Vieira Martins
2025-04-14T07:03:41Z
置信度 0.70
-
The rise of quantum computing technology has brought new prospects and opportunities for optimal power flow calculation and optimal scheduling of power systems. In the face of complex network topology, variable load demand, and changing energy supply, traditio…
crossref
Runhao Zhang
2024-10-02T13:13:20Z
置信度 0.70
-
crossref
Sai Nethra Betgeri
2025-03-20T10:51:24Z
置信度 0.70
-
crossref
Wen-Yeo Chen
2025-03-15T03:52:06Z
置信度 0.70
-
crossref
Luis de Pedro
2025-05-16T06:46:21Z
置信度 0.70
-
crossref
Mandaar Bhaskar Pande
2025-03-17T00:59:40Z
置信度 0.70