-
A goal of quantum information technology is to control the quantum state of a system, including its preparation, manipulation, and measurement. However, scalability to many qubits and controlled con-nectivity between any selected qubits are two of the major st…
openalex
J. Q. You, Jaw-Shen Tsai, Franco Nori
2002-10-21
置信度 0.72
QubitSuperconducting quantum computingQuantum computerScalabilityComputer science
-
Error-correcting codes protect quantum information and form the basis of fault-tolerant quantum computing. Leading proposals for fault-tolerant quantum computation require codes with an exceedingly rare property, a transversal non-Clifford gate. Codes with the…
openalex
Earl T. Campbell
2014-12-03
置信度 0.72
Quantum computerComputer scienceDiscrete mathematicsAlgorithmMathematics
-
We study a generic model of quantum computer, composed of many qubits coupled by short-range interaction. Above a critical interqubit coupling strength, quantum chaos sets in, leading to quantum ergodicity of the computer eigenstates. In this regime the nonint…
openalex
Bertrand Georgeot, Dima L. Shepelyansky, B. Georgeot, D. L. Shepelyansky
2000-09-01
置信度 0.72
QubitQuantum mechanicsPhysicsQuantum computerQuantum
-
Quantum information science explores the frontier of highly complex quantum states, the "entanglement frontier." This study is motivated by the observation (widely believed but unproven) that classical systems cannot simulate highly entangled quantum systems e…
openalex
John Preskill
2012-03-26
置信度 0.72
Quantum entanglementFrontierQuantum computerComputer scienceQuantum decoherence
-
With their hyperfine states serving as two-level qubits, atoms can be packed into closely spaced, laser-cooled arrays and be individually addressed using laser pulses.
openalex
David S. Weiss, M. Saffman
2017-07-01
置信度 0.72
Hyperfine structureQubitEnergetic neutral atomAtomic physicsLaser
-
In this work we introduce an open source suite of quantum application-oriented performance benchmarks that is designed to measure the effectiveness of quantum computing hardware at executing quantum applications. These benchmarks probe a quantum computer's per…
openalex
Thomas Lubinski, Sonika Johri, Paul D. Varosy, Jeremiah Coleman 等
2023-01-01
置信度 0.72
Computer scienceComputer architectureQuantum computerQuantumParallel computing
-
I assess the potential of quantum computation. Broad and important applications must be found to justify construction of a quantum computer; I review some of the known quantum algorithms and consider the prospects for finding new ones. Quantum computers are no…
openalex
John Preskill
1998-01-08
置信度 0.72
Quantum computerComputer scienceQuantum decoherenceQuantumQuantum algorithm
-
Abstract Distributed quantum computing (DQC) combines the computing power of multiple networked quantum processing modules, ideally enabling the execution of large quantum circuits without compromising performance or qubit connectivity 1,2 . Photonic networks …
europepmc
D. Main, P. Drmota, D. P. Nadlinger, E. M. Ainley 等
2025
置信度 0.80
Link (geometry)Computer scienceComputer networkQuantum computerDistributed computing
-
We present a scheme for linear optical quantum computing using time-bin-encoded qubits in a single spatial mode. We show methods for single-qubit operations and heralded controlled-phase (cphase) gates, providing a sufficient set of operations for universal qu…
openalex
Peter C. Humphreys, Benjamin J. Metcalf, Justin B. Spring, M.W. Moore 等
2013-10-09
置信度 0.72
QubitQuantum computerComputer scienceFidelityQuantum gate
-
In distributed quantum computing architectures, with the network and communications functionalities provided by the Quantum Internet, remote quantum processing units can communicate and cooperate for executing computational tasks that single, noisy, intermedia…
openalex
Davide Ferrari, Angela Sara Cacciapuoti, Michele Amoretti, Marcello Caleffi
2021-01-01
置信度 0.72
Computer scienceQuantum computerQuantum networkCompilerQuantum algorithm
-
Holonomic Quantum Computation (HQC) is an all-geometrical approach to quantum information processing. In the HQC strategy information is encoded in degenerate eigen-spaces of a parametric family of Hamiltonians. The computational network of unitary quantum gat…
openalex
Jiannis K. Pachos, Paolo Zanardi
2001-04-10
置信度 0.72
Quantum computerHolonomicQuantum networkQuantum gateTopology (electrical circuits)
-
openalex
M. Cerezo, Andrew Arrasmith, Ryan Babbush, Simon C. Benjamin 等
2021-08-12
置信度 0.72
Quantum algorithmQuantum computerQuantumQuantum technologyComputer science
-
This chapter sketches the foundations of the subject, discussing salient features of quantum information, formulates a mathematical model of quantum computation and highlights some implications of the model. It reviews two particularly promising applications o…
openalex
John Preskill
2023-03-15
置信度 0.72
Computer scienceQuantumPhysicsQuantum mechanics
-
We show that a wide range of spin clusters with antiferromagnetic intracluster exchange interaction allows one to define a qubit. For these spin cluster qubits, initialization, quantum gate operation, and readout are possible using the same techniques as for s…
openalex
Florian Meier, Jeremy Levy, Daniel Loss
2003-10-10
置信度 0.72
QubitPhysicsCluster stateSpin (aerodynamics)Quantum computer
-
We develop a method to entangle neutral atoms using cold controlled collisions. We analyse this method in two particular set-ups: optical lattices and magnetic microtraps. Both offer the possibility of performing certain multi-particle operations in parallel. …
openalex
Hans J. Briegel, Tommaso Calarco, Dieter Jaksch, J. I. Cirac 等
2000-02-01
置信度 0.72
Energetic neutral atomQuantum computerQuantumSet (abstract data type)Computer science
-
Quantum-dot cellular automata (QCA), arrays of coupled quantum-dot devices, are proposed for quantum computing. The notion of coherent QCA (CQCA) is introduced in order to distinguish QCA applied to quantum computing from classical digital QCA. Information is …
openalex
G. Tóth, Craig S. Lent, Géza Tóth
2001-04-19
置信度 0.72
PhysicsQuantum dot cellular automatonQuantum cellular automatonQuantum computerQuantum dot
-
openalex
Péter Wittek, Peter Wittek
2014-01-01
置信度 0.72
Quantum algorithmQuantum computerQubitComputer scienceQuantum circuit
-
Abstract There is great interest in using quantum computers to efficiently simulate a quantum system’s dynamics as existing classical computers cannot do this. Little attention, however, has been given to quantum simulation of a classical nonlinear continuum s…
openalex
Frank Gaitan
2020-07-16
置信度 0.72
Inviscid flowNonlinear systemAerospaceComputer scienceQuantum
-
Control over electron-spin states, such as coherent manipulation, filtering and measurement promises access to new technologies in conventional as well as in quantum computation and quantum communication. We review our proposal of using electron spins in quant…
openalex
Guido Burkard, Hans‐Andreas Engel, Daniel Loss
2000-09-01
置信度 0.72
SpintronicsBasel IPhysicsEngineering physicsMathematics
-
What additional gates are needed for a set of classical universal gates to do universal quantum computation? We prove that any single-qubit real gate suffices, except those that preserve the computational basis. The Gottesman-Knill Theorem implies that any qua…
openalex
Y-Y Shi
2003-01-01
置信度 0.72
Toffoli gateHadamard transformQuantum gateControlled NOT gateUniversal set
-
openalex
D. V. Averin, B. Ruggiero, P. Silvestrini
2001-01-01
置信度 0.72
Josephson effectCooper pairPhysicsCondensed matter physicsMacroscopic quantum phenomena
-
Abstract Exciton-polariton condensates have attractive features for quantum computation, e.g., room temperature operation, high dynamical speed, ease of probe, and existing fabrication techniques. Here, we present a complete theoretical scheme of quantum compu…
openalex
Sanjib Ghosh, T. C. H. Liew
2020-02-04
置信度 0.72
Quantum computerExcitonQubitQuantum tunnellingPolariton
-
openalex
Eli Biham, Gilles Brassard, Dan Kenigsberg, Tal Mor
2004-04-15
置信度 0.72
Quantum entanglementQuantumQuantum computerComputer scienceTheoretical computer science
-
openalex
Harry Buhrman, Hein Röhrig
2003-01-01
置信度 0.72
Quantum computerComputer scienceComputational scienceQuantumTheoretical computer science
-
openalex
Ronald de Wolf
1998-09-01
置信度 0.72
Computer scienceQuantum computerQuantumQuantum mechanicsPhysics
-
In this Tutorial, we introduce basic conceptual elements to understand and build a gate-based superconducting quantum computing system.
openalex
Sangil Kwon, Akiyoshi Tomonaga, Gopika Lakshmi Bhai, Simon J. Devitt 等
2021-01-28
置信度 0.72
SuperconductivityQuantum computerPhysicsCondensed matter physicsMaterials science
-
Quantum Computing is a technology, which promises to overcome the drawbacks of conventional CMOS technology for high density and high performance applications. Its potential to revolutionize today's computing world is attracting more and more researchers towar…
openalex
Hilal A. Bhat, Farooq Ahmad Khanday, Brajesh Kumar Kaushik, Faisal Bashir 等
2022-01-01
置信度 0.72
ImplementationComputer scienceQuantum computerQuantumComputer architecture
-
openalex
Emanuel Knill
2010-01-01
置信度 0.72
ExploitQuantum computerComputer scienceQuantum cryptographyCryptography
-
Quantum computing - the processing of information according to the fundamental laws of physics - offers a means to solve efficiently a small but significant set of classically intractable problems. Quantum computers are based on the controlled manipulation of …
openalex
Steane, AM
1999-01-01
置信度 0.72
Quantum computerComputer scienceFault toleranceQuantumParallel computing
-
Bosonic rotation codes, introduced here, are a broad class of bosonic error-correcting codes based on phase-space rotation symmetry. We present a universal quantum computing scheme applicable to a subset of this class-number-phase codes-which includes the well…
openalex
Arne L. Grimsmo, Joshua Combes, Ben Q. Baragiola
2020-03-06
置信度 0.72
Computer scienceQuantum computerQuantum error correctionQuantumBoson
-
Abstract It is argued that underlying the Church–Turing hypothesis there is an implicit physical assertion. Here, this assertion is presented explicitly as a physical principle: ‘every finitely realizible physical system can be perfectly simulated by a univers…
openalex
David Deutsch
1985-07-08
置信度 0.72
Quantum Turing machineTuring machineUniversal Turing machineQuantum computerSuper-recursive algorithm
-
Computational chemistry is an essential tool in the pharmaceutical industry. Quantum computing is a fast evolving technology that promises to completely shift the computational capabilities in many areas of chemical research by bringing into reach currently im…
openalex
Nick S. Blunt, Joan Camps, Ophelia Crawford, Róbert Izsák 等
2022-11-10
置信度 0.72
Quantum computerComputer scienceQuantumAtomic orbitalQuantum algorithm
-
After a brief introduction to the principles and promise of quantum information processing, the requirements for the physical implementation of quantum computation are discussed. These five requirements, plus two relating to the communication of quantum inform…
openalex
David P. DiVincenzo
2000-09-01
置信度 0.72
Quantum computerQuantum technologyPhysicsQuantum informationQuantum network
-
Arrays of electrically and magnetically controllable electron-spin qubits can be lithographically fabricated on silicon wafers.
openalex
Lieven M. K. Vandersypen, M. A. Eriksson
2019-08-01
置信度 0.72
SpinsQubitWaferSemiconductorQuantum computer
-
We propose to use a single mesoscopic ensemble of trapped polar molecules for quantum computing. A "holographic quantum register" with hundreds of qubits is encoded in collective excitations with definite spatial phase variations. Each phase pattern is uniquel…
openalex
Karl Woldum Tordrup, Antonio Negretti, Klaus Mølmer
2008-07-21
置信度 0.72
QubitPhysicsQuantum computerQuantum mechanicsPhase qubit
-
The emerging field of quantum computing has shown it might change how we process information by using the unique principles of quantum mechanics . As researchers continue to push the boundaries of quantum technologies to unprecedented levels, distributed quant…
openalex
David Barral, F. Javier Cardama, Guillermo Díaz-Camacho, Daniel Faílde 等
2025-03-24
置信度 0.72
Computer scienceQuantum computerQuantumDistributed computingPhysics
-
openalex
Nathan K. Langford, Sven Ramelow, Robert Prevedel, William J. Munro 等
2011-10-01
置信度 0.72
PhotonicsPhotonPhysicsQuantum computerComputer science
-
A unifying framework for quantum error-correcting codes based on collections of bosons allows for the discovery of new codes that provide robust error correction in line with fundamental theoretical limits.
openalex
Arne L. Grimsmo, Joshua Combes, Ben Q. Baragiola
2020-03-06
置信度 0.72
Quantum computerBosonQuantumComputer scienceQuantum error correction
-
We propose a new physical approach for encoding and processing of quantum information in ensembles of multilevel quantum systems, where the different bits are not carried by individual particles but associated with the collective population of different intern…
openalex
E. Brion, Klaus Mølmer, M. Saffman
2007-12-26
置信度 0.72
Computer scienceQuantumQuantum computerPhysicsStatistical physics
-
We propose a realizable architecture using one-dimensional transmission line resonators to reach the strong-coupling limit of cavity quantum electrodynamics in superconducting electrical circuits. The vacuum Rabi frequency for the coupling of cavity photons to…
openalex
Alexandre Blais, Ren-Shou Huang, Andreas Wallraff, S. M. Girvin 等
2004-06-29
置信度 0.72
Circuit quantum electrodynamicsQubitCavity quantum electrodynamicsPhysicsSuperconducting quantum computing
-
Abstract Executing quantum algorithms on error-corrected logical qubits is a critical step for scalable quantum computing, but the requisite numbers of qubits and physical error rates are demanding for current experimental hardware. Recently, the development o…
openalex
Yue Wu, Shimon Kolkowitz, Shruti Puri, Jeff D. Thompson
2022-08-09
置信度 0.72
QubitComputer scienceQuantum computerError detection and correctionQuantum error correction
-
The successful implementation of algorithms on quantum processors relies on the accurate control of quantum bits (qubits) to perform logic gate operations. In this era of noisy intermediate-scale quantum (NISQ) computing, systematic miscalibrations, drift, and…
openalex
Akel Hashim, Ravi Naik, Alexis Morvan, Jean-Loup Ville 等
2020-10-01
置信度 0.72
Quantum computerComputer scienceQuantum error correctionQuantum algorithmQuantum Fourier transform
-
This article gives an elementary introduction to quantum computing. It is a draft for a book chapter of the "Handbook of Nature-Inspired and Innovative Computing", Eds. A. Zomaya, G.J. Milburn, J. Dongarra, D. Bader, R. Brent, M. Eshaghian-Wilner, F. Seredynsk…
arxiv
J. Eisert, M. M. Wolf
2004-01-05T23:28:17Z
置信度 0.78
quant-phcond-mat.other
-
Foundations of the theory of quantum Turing machines are investigated. The protocol for the preparation and the measurement of quantum Turing machines is discussed. The local transition functions are characterized for fully general quantum Turing machines. A n…
arxiv
Masanao Ozawa
1998-09-14T17:56:43Z
置信度 0.78
quant-ph
-
We introduce Strawberry Fields, an open-source quantum programming architecture for light-based quantum computers, and detail its key features. Built in Python, Strawberry Fields is a full-stack library for design, simulation, optimization, and quantum machine…
arxiv
Nathan Killoran, Josh Izaac, Nicolás Quesada, Ville Bergholm 等
2018-04-09T18:00:16Z
置信度 0.78
quant-phphysics.comp-ph
-
Recently, academics and the corporate sector have paid attention to serverless computing, which enables dynamic scalability and an economic model. In serverless computing, users only pay for the time they actually use resources, enabling zero scaling to optimi…
arxiv
Muhammed Golec, Guneet Kaur Walia, Mohit Kumar, Felix Cuadrado 等
2023-10-12T16:01:46Z
置信度 0.78
cs.DC
-
With quantum computing technologies nearing the era of commercialization and quantum supremacy, machine learning (ML) appears as one of the promising "killer" applications. Despite significant effort, there has been a disconnect between most quantum ML proposa…
arxiv
Alejandro Perdomo-Ortiz, Marcello Benedetti, John Realpe-Gómez, Rupak Biswas
2017-08-31T14:41:32Z
置信度 0.78
quant-phcs.ET
-
There have been significant recent advances in constructing theoretical and practical quantum error correcting codes that function well as quantum memories; however, performing fault-tolerant logical gates on these codes is less studied, and the protocols that…
arxiv
Noah Berthusen, Elijah Durso-Sabina
2025-10-21T16:00:44Z
置信度 0.78
quant-ph
-
Existing quantum routing implicitly mimics classical routing principles, with finding the ``best'' path (aka pathfinding), according to a selected routing metric, as a core mechanism for establishing end-to-end entanglement. However, optimal pathfinding is com…
arxiv
Si-Yi Chen, Angela Sara Cacciapuoti, Marcello Caleffi
2025-08-25T13:38:13Z
置信度 0.78
quant-ph
-
We give a new theoretical solution to a leading-edge experimental challenge, namely to the verification of quantum computations in the regime of high computational complexity. Our results are given in the language of quantum interactive proof systems. Specific…
arxiv
Anne Broadbent
2015-09-30T14:06:26Z
置信度 0.78
quant-ph
-
In this paper, we review some features of quantum annealing and related topics from viewpoints of statistical physics, condensed matter physics, and computational physics. We can obtain a better solution of optimization problems in many cases by using the quan…
arxiv
Shu Tanaka, Ryo Tamura
2012-04-13T07:49:56Z
置信度 0.78
cond-mat.dis-nncond-mat.stat-mechquant-ph
-
Quantum computing offers a new paradigm for advancing high-energy physics research by enabling novel methods for representing and reasoning about fundamental quantum mechanical phenomena. Realizing these ideals will require the development of novel computation…
arxiv
Travis S. Humble, Andrea Delgado, Raphael Pooser, Christopher Seck 等
2022-03-14T13:23:20Z
置信度 0.78
quant-ph
-
Cloud-accessible quantum computing has made hardware comparison not only a physics benchmark but also a practical purchasing decision. Cost-aware comparison of quantum computers remains underexplored and is difficult to do under the heterogeneous billing model…
arxiv
Siddarth Shinde, Jakub Szefer
2026-07-30T17:36:23Z
置信度 0.78
quant-phcs.ETcs.PF
-
For typical quantum subroutines in the gate-based model of quantum computing, explicit decompositions of circuits in terms of single-qubit and two-qubit entangling gates may exist. However, they often lead to large-depth circuits that are challenging for noisy…
arxiv
Dhruv Srinivasan, Kushal Chakrabarti, Nikhil Chopra, Avik Dutt
2023-09-18T17:30:03Z
置信度 0.78
quant-ph
-
Quantum technologies available currently contain noise in general, often dubbed noisy intermediate-scale quantum (NISQ) systems. We here present the verification of noise in measurement readout errors in cloud-based quantum computing services, IBMQ and Rigetti…
arxiv
Seungchan Seo, Joonwoo Bae
2021-12-02T05:08:42Z
置信度 0.78
quant-ph
-
Quantum computers and quantum algorithms have made great strides in the last few years and promise improvements over classical computing for specific tasks. Although the current hardware is not yet ready to make real impacts at the time of writing, this will c…
arxiv
Nils Quetschlich, Tobias Forster, Adrian Osterwind, Domenik Helms 等
2024-08-26T18:00:03Z
置信度 0.78
quant-phcs.ET
-
We propose a very large family of benchmarks for probing the performance of quantum computers. We call them volumetric benchmarks (VBs) because they generalize IBM's benchmark for measuring quantum volume \cite{Cross18}. The quantum volume benchmark defines a …
arxiv
Robin Blume-Kohout, Kevin C. Young
2019-04-11T06:25:26Z
置信度 0.78
quant-ph
-
Quantum computing has made considerable progress in recent years in both software and hardware. But to unlock the power of quantum computers in solving problems that cannot be efficiently solved classically, quantum computing at scale is necessary. Unfortunate…
arxiv
Nils Quetschlich, Mathias Soeken, Prakash Murali, Robert Wille
2024-02-19T19:00:01Z
置信度 0.78
quant-ph
-
Effective epidemic control is crucial for mitigating the spread of infectious diseases, particularly when pharmaceutical interventions such as vaccines or treatments are limited. Non-pharmaceutical strategies, including mobility restrictions, are key in reduci…
arxiv
Deborah Volpe, Giacomo Orlandi, Mattia Boggio, Carlo Novara 等
2025-07-17T11:16:08Z
置信度 0.78
physics.soc-phq-bio.PE
-
Computational methods are the most effective tools we have besides scientific experiments to explore the properties of complex biological systems. Progress is slowing because digital silicon computers have reached their limits in terms of speed. Other types of…
arxiv
Viv Kendon
2020-04-01T20:58:15Z
置信度 0.78
quant-ph
-
We propose a model for a scalable quantum computing in the circuit-quantum electrodynamics(QED) architecture. In the Kagome lattice of qubits three qubits are connected to each other through a superconducting three-junction flux qubit at the vertices of the la…
arxiv
Mun Dae Kim, Jaewan Kim
2017-06-19T05:51:52Z
置信度 0.78
quant-phcond-mat.supr-con
-
Quantum circuit execution is the central task in quantum computation. Due to inherent quantum-mechanical constraints, quantum computing workflows often involve a considerable number of independent measurements over a large set of slightly different quantum cir…
arxiv
Daniel Claudino, Dmitry I. Lyakh, Alexander J. McCaskey
2024-06-05T17:16:07Z
置信度 0.78
quant-ph
-
Several noisy intermediate-scale quantum computations can be regarded as logarithmic-depth quantum circuits on a sparse quantum computing chip, where two-qubit gates can be directly applied on only some pairs of qubits. In this paper, we propose a method to ef…
arxiv
Yuki Takeuchi, Yasuhiro Takahashi, Tomoyuki Morimae, Seiichiro Tani
2021-09-30T08:56:30Z
置信度 0.78
quant-ph
-
Quantum advantage is well-established in centralized computing, where quantum algorithms can solve certain problems exponentially faster than classical ones. In the distributed setting, significant progress has been made in bandwidth-limited networks, where qu…
arxiv
Francesco d'Amore
2025-03-14T13:36:51Z
置信度 0.78
cs.DCquant-ph
-
Quantum computing (QC) promises to be a transformative technology with impact on various application domains, such as optimization, cryptography, and material science. However, the technology has a sharp learning curve, and practical evaluation and characteriz…
arxiv
Minh Chung, Yaknan Gambo, Burak Mete, Xiao-Ting Michelle To 等
2025-08-13T08:02:05Z
置信度 0.78
physics.ed-phcs.ETmath.QAquant-ph
-
We explore the possibility of adding complex absorbing potential at the boundaries when solving the one-dimensional real-time Schrödinger evolution on a grid using a quantum computer with a fully quantum algorithm described on a $n$ qubit register. Due to the …
arxiv
Mariane Mangin-Brinet, Jing Zhang, Denis Lacroix, Edgar Andres Ruiz Guzman
2023-11-27T14:25:41Z
置信度 0.78
quant-ph
-
In its most general form, the atom chip is a device in which neutral or charged particles are positioned in an isolating environment such as vacuum (or even a carbon solid state lattice) near the chip surface. The chip may then be used to interact in a highly …
arxiv
Ron Folman
2011-08-18T18:19:12Z
置信度 0.78
quant-ph
-
For superconducting qubits, microwave pulses drive rotations around the Bloch sphere. The phase of these drives can be used to generate zero-duration arbitrary virtual $Z$ gates, which, combined with two ${X}_{\ensuremath{\pi}/2}$ gates, can generate any SU(2)…
openalex
David McKay, Christopher J. Wood, Sarah Sheldon, Jerry M. Chow 等
2017-08-31
置信度 0.72
Bloch sphereQuantum computerQuantum decoherenceQuantum gateQubit
-
crossref
M. Curty
2004-11-17T19:12:37Z
置信度 0.70
-
crossref
Federico Grasselli
2021-01-04T03:03:22Z
置信度 0.70
-
crossref
Joonwoo Bae
2020-08-20T21:53:30Z
置信度 0.70
-
crossref
∎ RenatoRenner
2015-08-20T05:29:45Z
置信度 0.70
-
crossref
Federico Grasselli
2021-01-04T03:03:22Z
置信度 0.70
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2025
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2025
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2026
置信度 0.80
-
europepmc
2025
置信度 0.80