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crossref
Marcus Stephen Edwards
2026-01-25T16:13:44Z
置信度 0.70
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2020-12-22T21:18:49Z
置信度 0.70
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Khaled Salah Mohamed
2020-01-25T15:02:35Z
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2021-09-09T00:05:41Z
置信度 0.70
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It has always been a self-evident and obvious feature of any kind of communication that there should be an exchange of objects like photons or electrons between the sender and the receiver to convey any information. In this chapter a protocol is presented in w…
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M. Suhail Zubairy
2020-06-18T04:26:14Z
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Vipul Kumar Sharma
2026-01-02T03:05:43Z
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Samuel Ovaskainen, Majid Haghparast, Tommi Mikkonen
2025-12-01T18:22:52Z
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Quantum artificial intelligence (QAI) is a topic of study that blends quantum computing and AI. In order to investigate the possibilities of fruitful cooperation across both disciplines of computer science (CS), the authors will attempt to convey some of the r…
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Roheen Qamar, Baqar Ali Zardari, Alex Khang
2024-01-31T10:34:51Z
置信度 0.70
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This chapter begins with a brief history of how classical mechanics evolved into quantum mechanics. Next a bird’s-eye view of the basic aspects of quantum mechanics and its applications is given. In subsequent chapters, these topics are discussed with reasonab…
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M. Suhail Zubairy
2020-06-18T04:18:58Z
置信度 0.70
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This paper investigates the intriguing potential of integrating Vedic Computing—a system of computing principles originating from ancient Indian texts—into the realm of quantum computing. While quantum computing offers unprecedented computational capabilities,…
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CRS KUMAR
2024-03-26T19:30:46Z
置信度 0.70
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Marco Lanzagorta, Jeffrey Uhlmann
2022-06-08T18:18:59Z
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2010-06-04T16:37:53Z
置信度 0.70
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Guolin Wu
2025-10-08T14:03:14Z
置信度 0.70
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With the approach of quantum processing, customary cryptographic calculations and conventions utilized for PC security face critical difficulties. This examination paper investigates the utilization of quantum registering in PC security and its possible effect…
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Manish Kaushik, Nidhi Sindhwani, Komal Saxena
2024-01-31T10:34:51Z
置信度 0.70
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Jarosław Adam Miszczak
2022-06-08T02:43:54Z
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2022-06-09T04:24:49Z
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Indu Bala
2026-01-02T00:05:28Z
置信度 0.70
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Abstract: Quantum Computing and Quantum Information Science offers a comprehensive, interdisciplinary exploration of the mathematical principles, computational models, and engineering challenges that define the field of quantum information. Building upon the f…
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Murali Krishna Pasupuleti
2025-07-28T03:40:16Z
置信度 0.70
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2022-07-15T15:34:41Z
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2012-06-18T18:15:14Z
置信度 0.70
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2012-09-28T04:47:35Z
置信度 0.70
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In this section we introduce the framework of quantum mechanics as it pertains to the types of systems we will consider for quantum computing. Here we also introduce the notion of a quantum bit or ‘qubit’, which is a fundamental concept for quantum computing. …
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Phillip Kaye, Raymond Laflamme, Michele Mosca
2020-11-11T01:49:26Z
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Peter Shadbolt
2022-03-04T20:55:35Z
置信度 0.70
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Koji Nagata, Do Ngoc Diep, Ahmed Farouk, Tadao Nakamura
2022-07-15T15:34:41Z
置信度 0.70
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Abstract This manuscript examines quantum computing and quantum cybersecurity as an integrated research and governance problem shaped by uncertainty, cryptographic transition, infrastructure interdependence and emerging computational advantage. It develops a s…
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Murali Krishna Pasupuleti
2026-05-17T08:55:10Z
置信度 0.70
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Des mémoires quantiques pour la mise en réseau et le calcul En vue de rendre possible l'émergence de technologies quantiques pour la communication et le calcul, une fonction essentielle à remplir est celle du stockage d'états quantiques. Dans cette thèse, nous…
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Pierre Cussenot
2026-04-09T08:22:25Z
置信度 0.70
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R Saravana Moorthy
2024-12-07T08:27:52Z
置信度 0.70
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Seiki Akama
2014-07-14T04:01:36Z
置信度 0.70
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Tiffany Khou, Christopher Stuetzle
2026-02-06T09:32:55Z
置信度 0.70
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We have seen in the previous chapters that quantum computers seem to be more powerful than classical computers for certain problems. There are limits on the power of quantum computers, however. Since a classical computer can simulate a quantum computer, a quan…
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Phillip Kaye, Raymond Laflamme, Michele Mosca
2020-11-10T22:59:07Z
置信度 0.70
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Abstract This chapter focuses on classical computing to set the stage for the similarities and differences with quantum computers in later chapters. The gentle introduction deploys examples of binary digits (bits), Boolean logic, and classical logic gates NOT,…
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Alice Flarend, Robert Hilborn
2026-07-22T23:57:09Z
置信度 0.70
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crossref
Seiki Akama
2014-07-14T04:01:36Z
置信度 0.70
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Abstract: This chapter critically examines the profound impact of quantum computing on the landscape of digital security, signaling a paradigm shift in how encryption and cybersecurity are approached in the quantum era. Quantum computing, characterized by its …
crossref
Murali Krishna Pasupuleti
2024-03-23T16:28:27Z
置信度 0.70
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crossref
Christopher R. Monroe
2023-03-08T19:15:10Z
置信度 0.70
-
Mapping functions on bits to Hamiltonians acting on qubits has many applications in quantum computing. In particular, Hamiltonians representing Boolean functions are required for applications of quantum annealing or the quantum approximate optimization algorit…
openalex
Stuart Hadfield
2021-12-21
置信度 0.72
Hamiltonian (control theory)Boolean functionQubitQuantumMathematics
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crossref
Kumari Manisha, V. Dhanunjana Chari, Leta Jule Tesfaye
2023-07-25T02:54:42Z
置信度 0.70
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Paul Webster
2020-04-06T12:35:46Z
置信度 0.70
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crossref
W. M. Kaminsky, S. Lloyd
2011-10-12T22:10:18Z
置信度 0.70
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Quantum computing is fundamentally limited by the Planck constant ( \(h = 6.63\ \times {{10}^{ - 34}}\ J \cdot s\) ) through the Heisenberg Limit. The energy consumption over a given time, or the speed of processing information with a specific energy budget, i…
crossref
Frank Zhigang Wang
2025-09-30T11:09:45Z
置信度 0.70
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Bibin Xavier
2026-01-02T00:22:33Z
置信度 0.70
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Lahari Popuri, Sachin Sharma
2026-03-23T20:19:51Z
置信度 0.70
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I. Ajitha, A. Devi
2026-01-02T00:09:06Z
置信度 0.70
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Keshav Kumar, Man Mohan Shukla
2026-01-02T03:07:45Z
置信度 0.70
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crossref
2026-05-29T21:34:20Z
置信度 0.70
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The conventional plant breeding has had some limitation in addressing the issues of global food security and challenges. Quantum computing proposes the way of improvement of genetic algorithm based optimization in plant breeding. The study attempts to analyse …
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Prabhjeet Kaur, Lokesh Jasrai, Ramandeep Sandhu
2025-11-13T14:39:43Z
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Pradnya Samit Mehta, Manaswi Brijesh Shekokar, Arnav Ashish Gilankar
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Dipankar Bhattacharyya, Jyotirmoy Guha
2022-02-02T13:27:06Z
置信度 0.70
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openalex
Michel Le Bellac
2006-06-15
置信度 0.72
Computer scienceContent (measure theory)Quantum computerQuantumComputer security
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J. I. Cirac, T. Pellizzari, J. F. Poyatos, P. Zoller
2011-09-12T17:37:40Z
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Vladimir Silva
2018-12-12T14:25:55Z
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Hai-Ping Cheng
2023-10-13T02:23:29Z
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2026-04-10T08:51:36Z
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Matheus Guedes de Andrade, Wenhan Dai, Saikat Guha, Don Towsley
2021-11-19T15:37:50Z
置信度 0.70
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<p> Quantum computing is a revolutionary technology that has the potential to solve complex problems that classical computers cannot. This article provides an overview of the current state of quantum computing, including a brief history of its developmen…
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Douha Jerbi
2023-04-29T17:03:53Z
置信度 0.70
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2026-05-29T21:34:20Z
置信度 0.70
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2026-05-29T21:34:20Z
置信度 0.70
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Tanay Roy
2023-06-02T08:41:55Z
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Bruno Carpentieri
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TAKAYOSHI OOTSUKA, KAZUHIRO SAKUMA
2009-10-04T21:37:17Z
置信度 0.70
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Koji Nagata, Do Ngoc Diep, Ahmed Farouk, Tadao Nakamura
2022-07-15T15:34:41Z
置信度 0.70
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crossref
Tanay Roy
2023-09-29T02:58:18Z
置信度 0.70
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crossref
Jarosław Adam Miszczak
2022-06-07T22:39:34Z
置信度 0.70
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crossref
2020-07-09T23:49:03Z
置信度 0.70
-
Faster algorithms, novel cryptographic mechanisms, and alternative methods of communication become possible when the model underlying information and computation changes from a classical mechanical model to a quantum mechanical one. Quantum algorithms perform …
arxiv
Eleanor G. Rieffel
2008-04-14T20:18:33Z
置信度 0.78
quant-ph
-
The development of quantum computing systems has been a staple of academic research since the mid-1990s when the first proposal for physical platforms were proposed using Nuclear Magnetic Resonance and Ion-Trap hardware. These first proposals were very basic, …
arxiv
Simon J. Devitt
2023-07-29T04:03:05Z
置信度 0.78
quant-ph
-
This paper gives new foundations of quantum state reduction without appealing to the projection postulate for the probe measurement. For this purpose, the quantum Bayes principle is formulated as the most fundamental principle for determining the state of a qu…
arxiv
Masanao Ozawa
1997-05-16T09:47:09Z
置信度 0.78
quant-ph
-
To overcome the physical limitations of scaling monolithic quantum computers, distributed quantum computing (DQC) interconnects multiple smaller-scale quantum processing units (QPUs) to form a quantum network. However, this approach introduces a critical chall…
arxiv
Raymond P. H. Wu, Chathu Ranaweera, Sutharshan Rajasegarar, Ria Rushin Joseph 等
2026-03-04T14:43:10Z
置信度 0.78
quant-phcs.DC
-
The quantum rate-distortion function plays a fundamental role in quantum information theory, however there is currently no practical algorithm which can efficiently compute this function to high accuracy for moderate channel dimensions. In this paper, we show …
arxiv
Kerry He, James Saunderson, Hamza Fawzi
2023-09-28T00:46:53Z
置信度 0.78
quant-phcs.ITmath.OC
-
Distributed quantum protocols rely on classical feedforward information to process measurement outcomes, but heterogeneous hardware and uncertain local timing can make the causal order of measurements ambiguous when inferred solely from arrival times. Even in …
arxiv
Jakob Kaltoft Søndergaard, René Bødker Christensen, Petar Popovski
2026-02-12T22:36:30Z
置信度 0.78
quant-ph
-
Hundreds of satellites equipped with cameras orbit the Earth to capture images from locations for various purposes. Since the field of view of the cameras is usually very narrow, the optics have to be adjusted and rotated between single shots of different loca…
arxiv
Nils Quetschlich, Vincent Koch, Lukas Burgholzer, Robert Wille
2023-07-31T18:00:01Z
置信度 0.78
quant-ph
-
The standard model (SM) of particle physics represents a theoretical paradigm for the description of the fundamental forces of nature. Despite its broad applicability, the SM does not enable the description of all physically possible events. The detection of e…
arxiv
Elie Bermot, Christa Zoufal, Michele Grossi, Julian Schuhmacher 等
2023-04-27T18:01:14Z
置信度 0.78
quant-phhep-ex
-
Quantum computers are available to use over the cloud, but the recent explosion of quantum software platforms can be overwhelming for those deciding on which to use. In this paper, we provide a current picture of the rapidly evolving quantum computing landscap…
arxiv
Ryan LaRose
2018-07-06T17:38:00Z
置信度 0.78
quant-phcs.ET
-
Optimizing objective functions stands to benefit significantly from leveraging quantum computers, promising enhanced solution quality across various application domains in the future. However, harnessing the potential of quantum solvers necessitates formulatin…
arxiv
Deborah Volpe, Nils Quetschlich, Mariagrazia Graziano, Giovanna Turvani 等
2024-06-18T17:56:10Z
置信度 0.78
quant-phcs.ET
-
We introduce protocols for designing and manipulating qubits with ultracold alkali atoms in 3D optical lattices. These qubits are formed from two-atom spin superposition states that create a decoherence-free subspace immune to stray magnetic fields, dramatical…
arxiv
Mikhail Mamaev, Joseph H. Thywissen, Ana Maria Rey
2019-11-05T17:20:53Z
置信度 0.78
quant-phcond-mat.quant-gas
-
This article gives an overview and a perspective of recent theoretical proposals and their experimental implementations in the field of quantum machine learning. Without an aim to being exhaustive, the article reviews specific high-impact topics such as quantu…
arxiv
Lucas Lamata
2023-03-11T01:02:16Z
置信度 0.78
quant-phcs.LG
-
Quantum computing tries to exploit entanglement and interference to process information more efficiently than the best known classical solutions. Experiments demonstrating the feasibility of this approach have already been performed. However, finding a really …
arxiv
Almut Beige
2005-12-06T16:03:03Z
置信度 0.78
cond-mat.otherquant-ph
-
We use entropy-energy arguments to assess the limitations on the running time and on the system size, as measured in qubits, of noisy macroscopic circuit-based quantum computers.
arxiv
Maxim Raginsky
2002-09-26T05:42:48Z
置信度 0.78
quant-ph
-
Although quantum computation (QC) is regarded as a promising numerical method for computational quantum chemistry, current applications of quantum-chemistry calculations on quantum computers are limited to small molecules. This limitation can be ascribed to te…
arxiv
Cheng-Lin Hong, Ting Tsai, Jyh-Pin Chou, Peng-Jen Chen 等
2022-05-28T16:22:18Z
置信度 0.78
quant-phphysics.chem-ph
-
This paper describes recent progress using nuclear magnetic resonance (NMR) as a platform for implementing quantum information processing (QIP) tasks. The basic ideas of NMR QIP are detailed, examining the successes and limitations of liquid and solid state ex…
arxiv
J. Baugh, J. Chamilliard, C. M. Chandrashekar, M. Ditty 等
2007-10-07T22:47:34Z
置信度 0.78
quant-ph
-
Traditional methods in quantum chemistry rely on Hartree-Fock-based Slater-determinant (SD) representations, whose underlying zeroth-order picture assumes separability by particle. Here, we explore a radically different approach, based on separability by Carte…
arxiv
Bill Poirier, Jonathan Jerke
2021-05-08T21:54:45Z
置信度 0.78
quant-ph
-
We discuss the performance of the Search and Fourier Transform algorithms on a hybrid computer constituted of classical and quantum processors working together. We show that this semi-quantum computer would be an improvement over a pure classical architecture,…
arxiv
Reinaldo O. Vianna, Wilson R. M. Rabelo, C. H. Monken
2003-04-11T20:47:25Z
置信度 0.78
quant-ph
-
We present a proposal for quantum information processing with neutral atoms trapped in optical lattices as qubits. Initialization and coherent control of single qubits can be achieved with standard laser cooling and spectroscopic techniques. We consider entang…
arxiv
Ivan H. Deutsch, Gavin K. Brennen, Poul S. Jessen
2000-03-06T21:27:38Z
置信度 0.78
quant-ph
-
A proof of quantumness is a type of challenge-response protocol in which a classical verifier can efficiently certify the quantum advantage of an untrusted prover. That is, a quantum prover can correctly answer the verifier's challenges and be accepted, while …
arxiv
Zhenning Liu, Alexandru Gheorghiu
2021-07-05T17:45:41Z
置信度 0.78
quant-ph
-
In this paper we propose a special computational device which uses light rays for solving the Hamiltonian path problem on a directed graph. The device has a graph-like representation and the light is traversing it by following the routes given by the connectio…
arxiv
Mihai Oltean
2007-08-10T20:01:24Z
置信度 0.78
cs.ARcs.DC
-
We present experimental quantum computation of the ground-state energy in a 103-site flat Kagome lattice under the antiferromagnetic Heisenberg model (KAFH), with IBM's Heron r1 and Heron r2 quantum processors. For spin-1/2 KAFH, our per-site ground-state ener…
arxiv
Muhammad Ahsan
2025-07-08T19:49:17Z
置信度 0.78
quant-phcs.ET
-
In this study, we develop a novel quantum machine learning (QML) framework to analyze cybersecurity vulnerabilities using data from the 2022 CISA Known Exploited Vulnerabilities catalog, which includes detailed information on vulnerability types, severity leve…
arxiv
Walid El Maouaki, Nouhaila Innan, Alberto Marchisio, Taoufik Said 等
2024-08-05T08:48:03Z
置信度 0.78
quant-phcs.CR
-
Various sources of noise limit the performance of quantum computers by altering qubit states in an uncontrolled manner throughout computations and reducing their coherence time. In quantum annealers, this noise introduces additional fluctuations to the paramet…
arxiv
Tristan Zaborniak, Rogério de Sousa
2020-06-29T22:37:05Z
置信度 0.78
quant-ph
-
This paper proposes a method of quantum Monte Carlo integration that retains the full quadratic quantum advantage, without requiring any arithmetic or quantum phase estimation to be performed on the quantum computer. No previous proposal for quantum Monte Carl…
arxiv
Steven Herbert
2021-05-19T12:47:14Z
置信度 0.78
quant-ph
-
In the absence of fault tolerant quantum error correction for analog, Hamiltonian quantum computation, error suppression via energy penalties is an effective alternative. We construct families of distance-$2$ stabilizer subsystem codes we call ``trapezoid code…
arxiv
Phattharaporn Singkanipa, Zihan Xia, Daniel A. Lidar
2024-12-09T18:36:38Z
置信度 0.78
quant-ph
-
We extend the concept of transfer learning, widely applied in modern machine learning algorithms, to the emerging context of hybrid neural networks composed of classical and quantum elements. We propose different implementations of hybrid transfer learning, bu…
arxiv
Andrea Mari, Thomas R. Bromley, Josh Izaac, Maria Schuld 等
2019-12-17T21:24:54Z
置信度 0.78
quant-phcs.LGstat.ML
-
The quantum computing scheme described in Phys. Rev. Lett. 98, 190504 (2007), when viewed as a cluster state computation, features a 3-D cluster state, novel adjustable strength error correction capable of correcting general errors through the correction of Z …
arxiv
Austin G. Fowler, Kovid Goyal
2008-05-21T06:09:03Z
置信度 0.78
quant-ph
-
The LIBOR Market Model (LMM) is a widely used model for pricing interest rate derivatives. While the Black-Scholes model is well-known for pricing stock derivatives such as stock options, a larger portion of derivatives are based on interest rates instead of s…
arxiv
Hao Tang, Wenxun Wu, Xian-Min Jin
2022-07-04T16:25:26Z
置信度 0.78
quant-phq-fin.PR
-
Neutral Atom Quantum Computing (NAQC) is an emerging modality for scalable quantum computation, valued for its long coherence times and the naturally identical atomic qubits. However, one of the main drawbacks is its slow execution rate, dominated by lengthy c…
arxiv
Xiaorang Guo, Jonas Winklmann, Vengkeat Chea, Martin Schulz
2026-07-13T12:46:46Z
置信度 0.78
quant-phcs.AR
-
In this study, we explore how the combination of synthetic biology, neuroscience modeling, and neuromorphic electronic systems offers a new approach to creating an artificial system that mimics the natural sense of smell. We argue that a co-design approach off…
arxiv
Kevin Max, Larissa Sames, Shimeng Ye, Jan Steinkühler 等
2025-04-14T09:57:20Z
置信度 0.78
cs.NEcs.ETq-bio.NC