-
crossref
2013-04-23T15:07:26Z
置信度 0.70
-
crossref
YOSHITAKA SASAKI
2012-09-28T00:47:35Z
置信度 0.70
-
crossref
Dhairyya Agarwal, Shalini D, Srinjoy Ganguly
2023-12-15T10:02:07Z
置信度 0.70
-
crossref
2025-12-24T00:05:26Z
置信度 0.70
-
crossref
2012-06-18T18:15:14Z
置信度 0.70
-
crossref
Ahmed Banafa
2023-07-13T09:00:56Z
置信度 0.70
-
crossref
Rüdiger Schack
2011-07-22T10:20:15Z
置信度 0.70
-
crossref
2023-07-14T21:39:50Z
置信度 0.70
-
crossref
Ivan B. Djordjevic
2021-02-26T10:53:36Z
置信度 0.70
-
A measure of quality of an error-correcting code is the maximum number of errors that it is able to correct. We show that a suitable notion of "number of errors" e makes sense for any quantum or classical system in the presence of arbitrary interactions. Thus,…
openalex
Emanuel Knill, Raymond Laflamme, Lorenza Viola
2000-03-13
置信度 0.72
Quantum error correctionError detection and correctionComputer scienceMeasure (data warehouse)Quantum information
-
openalex
John Chiaverini, D. Leibfried, Tobias Schaetz, M. D. Barrett 等
2004-12-01
置信度 0.72
QubitQuantum error correctionQuantum computerQuantum informationTrapped ion quantum computer
-
europepmc
G. Waldherr, Y. Wang, Sebastian Zaiser, Mohammad Jamali 等
2014
置信度 0.80
Register (sociolinguistics)Solid-stateSpin (aerodynamics)PhysicsState (computer science)
-
openalex
Matthew D. Reed, L. DiCarlo, Simon E. Nigg, Luyan Sun 等
2012-01-31
置信度 0.72
QubitQuantum error correctionQuantum circuitComputer scienceQuantum computer
-
The computational potential of a quantum processor can only be unleashed if errors during a quantum computation can be controlled and corrected for. Quantum error correction works if imperfections of quantum gate operations and measurements are below a certain…
europepmc
Philipp Schindler, Julio T. Barreiro, Thomas Monz, Volckmar Nebendahl 等
2011
置信度 0.80
Quantum error correctionQuantum computerReset (finance)QubitError detection and correction
-
Sparse-graph codes appropriate for use in quantum error-correction are presented. Quantum error-correcting codes based on sparse graphs are of interest for three reasons. First, the best codes currently known for classical channels are based on sparse graphs. …
openalex
David Mackay, Graeme Mitchison, P.L. McFadden
2004-09-28
置信度 0.72
QuantumComputer scienceBlock codeQuantum error correctionAlgorithm
-
Quantum error correction protocols will play a central role in the realisation of quantum computing; the choice of error correction code will influence the full quantum computing stack, from the layout of qubits at the physical level to gate compilation strate…
openalex
Joschka Roffe
2019-07-03
置信度 0.72
Quantum error correctionError detection and correctionComputer scienceQubitQuantum computer
-
Abstract. Quantum states are very delicate, so it is likely some sort of quantum error correction will be necessary to build reliable quantum computers.
openalex
Daniel Gottesman
2010-01-01
置信度 0.72
Quantum error correctionQuantum computerQuantumFault toleranceComputer science
-
We give a review on entanglement purification for bipartite and multipartite quantum states, with the main focus on the theoretical work carried out by our group in the last couple of years. We discuss entanglement purification in the context of quantum commun…
openalex
Wolfgang Dür, Hans J. Briegel
2007-07-17
置信度 0.72
PhysicsQuantum entanglementMultipartite entanglementMultipartiteQuantum mechanics
-
Operator quantum error correction is a recently developed theory that provides a generalized and unified framework for active error correction and passive error avoiding schemes. In this Letter, we describe these codes using the stabilizer formalism. This is a…
openalex
David Poulin
2005-12-01
置信度 0.72
Quantum error correctionQubitQuantum convolutional codeError detection and correctionQuantum information
-
crossref
Eduardo Novais, Eduardo R. Mucciolo, Harold U. Baranger
2013-09-05T05:03:20Z
置信度 0.70
-
crossref
2011-08-29T12:11:46Z
置信度 0.70
-
crossref
2016-08-03T22:03:47Z
置信度 0.70
-
crossref
2021-02-26T17:46:38Z
置信度 0.70
-
crossref
2018-09-10T13:07:31Z
置信度 0.70
-
crossref
Todd A. Brun, Min-Hsiu Hsieh
2013-09-05T05:03:20Z
置信度 0.70
-
crossref
Ivan Djordjevic
2012-04-10T21:53:05Z
置信度 0.70
-
crossref
2013-09-05T05:03:20Z
置信度 0.70
-
crossref
Mark Wilde
2013-09-05T05:03:20Z
置信度 0.70
-
crossref
Paolo Zanardi
2013-09-05T05:03:20Z
置信度 0.70
-
Faster and more accurate state measurement is required for progress in superconducting qubit experiments with greater numbers of qubits and advanced techniques such as feedback. We have designed a multiplexed measurement system with a bandpass filter that allo…
openalex
E. Jeffrey, D. Sank, J. Mutus, T. White 等
2014-05-15
置信度 0.72
QubitSuperconductivitySuperconducting quantum computingPhysicsState (computer science)
-
Abstract Conversion of electrical and optical signals lies at the foundation of the global internet. Such converters are used to extend the reach of long-haul fibre-optic communication systems and within data centres for high-speed optical networking of comput…
openalex
Mohammad Mirhosseini, Alp Sipahigil, Mahmoud Kalaee, Oskar Painter
置信度 0.72
QubitPhysicsQuantum computerPhotonQuantum information
-
Quantized eigenenergies and their associated wave functions provide extensive information for predicting the physics of quantum many-body systems. Using a chain of nine superconducting qubits, we implement a technique for resolving the energy levels of interac…
openalex
P. Roushan, C. Neill, Jirawat Tangpanitanon, V. M. Bastidas 等
2017-11-30
置信度 0.72
QubitPhotonSuperconductivitySuperconducting quantum computingPhysics
-
We report a superconducting artificial atom with a coherence time of ${T}_{2}^{*}=92$ $\ensuremath{\mu}$s and energy relaxation time ${T}_{1}=70$ $\ensuremath{\mu}$s. The system consists of a single Josephson junction transmon qubit on a sapphire substrate emb…
openalex
Chad Rigetti, Jay Gambetta, Stefano Poletto, B. L. T. Plourde 等
2012-09-24
置信度 0.72
TransmonQubitDephasingCoherence (philosophical gambling strategy)Phase qubit
-
We demonstrate an all-microwave two-qubit gate on superconducting qubits which are fixed in frequency at optimal bias points. The gate requires no additional subcircuitry and is tunable via the amplitude of microwave irradiation on one qubit at the transition …
openalex
Jerry M. Chow, Antonio Córcoles, Jay Gambetta, Chad Rigetti 等
2011-08-17
置信度 0.72
QubitSuperconducting quantum computingMicrowavePhysicsSuperconductivity
-
To do large-scale quantum information processing, it is necessary to control the interactions between individual qubits while retaining quantum coherence. To this end, superconducting circuits allow for a high degree of flexibility. We report on the time-domai…
openalex
A. O. Niskanen, K. Harrabi, Fumiki Yoshihara, Yasunobu Nakamura 等
2007-05-03
置信度 0.72
Superconducting quantum computingQubitFlux qubitPhysicsCoherence (philosophical gambling strategy)
-
Abstract We benchmark the decoherence of superconducting transmon qubits to examine the temporal stability of energy relaxation, dephasing, and qubit transition frequency. By collecting statistics during measurements spanning multiple days, we find the mean pa…
openalex
Jonathan J. Burnett, Andreas Bengtsson, Marco Scigliuzzo, David Niepce 等
2019-06-26
置信度 0.72
TransmonQubitDephasingQuantum decoherencePhysics
-
Demonstration of quantum entanglement, a key resource in quantum computation arising from a nonclassical correlation of states, requires complete measurement of all states in varying bases. By using simultaneous measurement and state tomography, we demonstrate…
openalex
Matthias Steffen, M. Ansmann, Radoslaw C. Bialczak, Nadav Katz 等
2006-09-07
置信度 0.72
Quantum tomographyQubitQuantum entanglementSuperconducting quantum computingQuantum mechanics
-
We report the experimental realization of a hybrid quantum circuit combining a superconducting qubit and an ensemble of electronic spins. The qubit, of the transmon type, is coherently coupled to the spin ensemble consisting of nitrogen-vacancy centers in a di…
openalex
Yuimaru Kubo, Cécile Grèzes, Andreas Dewes, T. Umeda 等
2011-11-21
置信度 0.72
TransmonQubitPhysicsPhase qubitFlux qubit
-
openalex
Irfan Siddiqi
2021-09-23
置信度 0.72
QubitQuantum computerSuperconducting quantum computingQuantum decoherenceCoherence (philosophical gambling strategy)
-
crossref
2005-12-08T22:33:52Z
置信度 0.70
-
crossref
H. Mooij
2006-01-18T18:42:54Z
置信度 0.70
-
Fluxonium radio-fréquence pour la détection de charge ultra-sensible Les circuits supraconducteurs sont des systèmes quantiques artificiels dont les propriétés peuvent être choisies pour répondre aux exigences de chaque application spécifique. Un circuit supra…
crossref
Baldo Luis Najera Santos
2026-04-08T17:52:21Z
置信度 0.70
-
crossref
Erika K. Carlson
2020-09-08T17:18:22Z
置信度 0.70
-
crossref
Maxime Boissonneault, J. M. Gambetta, Alexandre Blais
2010-09-03T18:53:26Z
置信度 0.70
-
Abstract Hawking radiation, predicted in 1974, establishes a fundamental bridge between quantum mechanics, general relativity, and thermodynamics. Direct observation remains impossible for astrophysical black holes (T_H ~ 10⁻⁸ K), motivating the development of…
crossref
sebastien icard
2026-01-19T08:38:21Z
置信度 0.70
-
Abstract To improve the performance of quantum computers, implementation technology that guarantees the scalability of the number of qubits is essential, and increasing the degrees of freedom in routing by 2.5-dimensional implementation is important for realiz…
crossref
Daisuke Saida, Mutsuo Hidaka, Kazumasa Makise
2023-04-05T14:36:02Z
置信度 0.70
-
We study a voltage-controlled version of the superconducting flux qubit [Chiorescu et al., Science 299, 1869 (2003)] and show that full control of qubit rotations on the entire Bloch sphere can be achieved. Circuit graph theory is used to study a setup where v…
crossref
Luca Chirolli, Guido Burkard
2006-11-16T05:10:30Z
置信度 0.70
cond-mat.supr-concond-mat.mes-hallquant-ph
-
crossref
2022-03-02T15:45:24Z
置信度 0.70
-
High-fidelity qubit readout in circuit QED requires suppressing relaxation due to the Purcell effect, typically achieved through the use of Purcell filters. A key limitation of existing Purcell filter implementations is their large footprint. In this work, we …
crossref
Simona Zaccaria, Antonio Gnudi
2025-09-09T14:32:08Z
置信度 0.70
-
crossref
Katherine Wright
2025-04-08T17:01:58Z
置信度 0.70
-
A formulation of numerical real-space renormalization groups for quantum many-body problems is presented and several algorithms utilizing this formulation are outlined. The methods are presented and demonstrated using S=1/2 and S=1 Heisenberg chains as test ca…
openalex
Steven R. White
1993-10-01
置信度 0.72
Hamiltonian (control theory)Density matrix renormalization groupEigenvalues and eigenvectorsPhysicsRenormalization
-
We provide a new quantum algorithm that efficiently determines the quality of a least-squares fit over an exponentially large data set by building upon an algorithm for solving systems of linear equations efficiently [Harrow et al., Phys. Rev. Lett. 103, 15050…
openalex
Nathan Wiebe, Daniel Braun, Seth Lloyd
2012-08-02
置信度 0.72
Quantum phase estimation algorithmQuantum algorithmAlgorithmComputer scienceQuantum
-
We describe a new polynomial time quantum algorithm that uses the quantum fast Fourier transform to find eigenvalues and eigenvectors of a local Hamiltonian, and that can be applied in cases (commonly found in ab initio physics and chemistry problems) for whic…
openalex
Daniel S. Abrams, Seth Lloyd
1999-12-13
置信度 0.72
Eigenvalues and eigenvectorsQuantum algorithmHamiltonian (control theory)Exponential functionQuantum Fourier transform
-
A digital computer is generally believed to be an efficient universal computing device; that is, it is believed to be able to simulate any physical computing device with an increase in computation time by at most a polynomial factor. This may not be true when …
openalex
Peter W. Shor
1999-01-01
置信度 0.72
Quantum computerInteger factorizationDiscrete logarithmPrime factorLogarithm
-
Quantum Leap? Quantum computers are expected to be able to solve some of the most difficult problems in mathematics and physics. It is not known, however, whether quantum field theories (QFTs) can be simulated efficiently with a quantum computer. QFTs are used…
openalex
Stephen P. Jordan, Keith S. M. Lee, John Preskill
2012-05-31
置信度 0.72
Quantum algorithmQuantum gravityPhysicsQuantum field theoryOpen quantum system
-
We introduce a quantum algorithm that produces approximate solutions for combinatorial optimization problems. The algorithm depends on a positive integer p and the quality of the approximation improves as p is increased. The quantum circuit that implements the…
openalex
Edward Farhi, Jeffrey Goldstone, Sam Gutmann
2014-11-14
置信度 0.72
AlgorithmQuantumOptimization algorithmComputer scienceQuantum algorithm
-
Many quantum algorithms have daunting resource requirements when compared to what is available today. To address this discrepancy, a quantum-classical hybrid optimization scheme known as 'the quantum variational eigensolver' was developed (Peruzzo et al 2014 N…
openalex
Jarrod R. McClean, Jonathan Romero, Ryan Babbush, Alán Aspuru‐Guzik
2016-02-04
置信度 0.72
Quantum machine learningPhysicsHamiltonian (control theory)QuantumQuantum computer
-
openalex
M. Cerezo, Arrasmith, A, Babbush, R, Benjamin, SC 等
2022-01-01
置信度 0.72
Quantum computerComputer scienceQuantum algorithmQuantumQubit
-
This paper proposes a novel evolutionary computing method called a genetic quantum algorithm (GQA). GQA is based on the concept and principles of quantum computing such as qubits and superposition of states. Instead of binary, numeric, or symbolic representati…
openalex
Kuk-Hyun Han, Jong-Hwan Kim
2002-11-07
置信度 0.72
Knapsack problemQubitQuantum computerComputer scienceQuantum algorithm
-
One of the most cited books in physics of all time, Quantum Computation and Quantum Information remains the best textbook in this exciting field of science. This 10th anniversary edition includes an introduction from the authors setting the work in context. Th…
openalex
Michael A. Nielsen, Isaac L. Chuang
2012-06-05
置信度 0.72
Quantum computerQuantum informationQuantum cryptographyQuantum information scienceComputer science
-
Machine-learning tasks frequently involve problems of manipulating and classifying large numbers of vectors in high-dimensional spaces. Classical algorithms for solving such problems typically take time polynomial in the number of vectors and the dimension of …
openalex
Seth Lloyd, Masoud Mohseni, Patrick Rebentrost
2013-07-01
置信度 0.72
Dimension (graph theory)LogarithmComputer scienceUnsupervised learningQuantum algorithm
-
Harrow, Hassidim, and Lloyd [Phys. Rev. Lett., 103 (2009), 150502] showed that for a suitably specified $N \times N$ matrix $A$ and an $N$-dimensional vector $\vec{b}$, there is a quantum algorithm that outputs a quantum state proportional to the solution of t…
openalex
Andrew M. Childs, Robin Kothari, Rolando D. Somma
2017-01-01
置信度 0.72
Quantum algorithmQuantum phase estimation algorithmMathematicsQuantum algorithm for linear systems of equationsAlgorithm
-
crossref
Samuel Petruescu
2025-08-26T21:05:06Z
置信度 0.70
-
crossref
2013-05-29T00:19:46Z
置信度 0.70
-
crossref
Helmut Bez, Tony Croft
2023-01-06T17:58:41Z
置信度 0.70
-
Abstract Finding a causal model for a set of classical variables is now a well-established task—but what about the quantum equivalent? Even the notion of a quantum causal model is controversial. Here, we present a causal discovery algorithm for quantum systems…
crossref
Christina Giarmatzi, Fabio Costa
2018-02-16T13:21:35Z
置信度 0.70
-
crossref
2011-08-29T16:11:46Z
置信度 0.70
-
crossref
2008-10-17T15:20:05Z
置信度 0.70
-
crossref
Xin-zhe WANG
2008-10-17T02:09:41Z
置信度 0.70
-
We give an approximation algorithm for Quantum Max-Cut which works by rounding an SDP relaxation to an entangled quantum state. The SDP is used to choose the parameters of a variational quantum circuit. The entangled state is then represented as the quantum ci…
crossref
Robbie King
2023-11-09T11:51:42Z
置信度 0.70
-
crossref
2023-11-25T16:02:58Z
置信度 0.70
-
The quest for quantum advantage, wherein quantum computers surpass the computational capabilities of classical computers executing state-of-the-art algorithms on well-defined tasks, represents a pivotal race in the domain of quantum computing. NISQ (Noisy Inte…
openalex
M. AbuGhanem, Hichem Eleuch
2024-01-01
置信度 0.72
Computer sciencePath (computing)Quantum computerQuantumParallel computing
-
A critical milestone on the path to useful quantum computers is quantum supremacy - a demonstration of a quantum computation that is prohibitively hard for classical computers. A leading near-term candidate, put forth by the Google/UCSB team, is sampling from …
openalex
Adam Bouland, Bill Fefferman, Chinmay Nirkhe, Umesh Vazirani
2018-03-12
置信度 0.72
QuantumQuantum computerMathematicsRealization (probability)Sampling (signal processing)
-
With the rapid progress made by industry and academia, quantum computers with dozens of qubits or even larger size are being realized. However, the fidelity of existing quantum computers often sharply decreases as the circuit depth increases. Thus, an ideal qu…
openalex
Riling Li, Bujiao Wu, Mingsheng Ying, Xiaoming Sun 等
2019-10-15
置信度 0.72
QubitComputer scienceQuantum computerElectronic circuitQuantum
-
We propose a general tensor network method for simulating quantum circuits. The method is massively more efficient in computing a large number of correlated bitstring amplitudes and probabilities than existing methods. As an application, we study the sampling …
openalex
Feng Pan, Pan Zhang
2021-03-04
置信度 0.72
QuantumElectronic circuitPhysicsComputer scienceQuantum mechanics
-
Abstract Google’s quantum supremacy experiment heralded a transition point where quantum computers can evaluate a computational task, random circuit sampling, faster than classical supercomputers. We examine the constraints on the region of quantum advantage f…
openalex
Alexander Zlokapa, Benjamin Villalonga, Sergio Boixo, Daniel A. Lidar
2023-04-11
置信度 0.72
QubitQuantum circuitQuantum error correctionQuantum computerQuantum
-
Depending on time, I'll discuss some subset of the following results. (1) There exists an oracle relative to which classical and quantum computers can solve the same approximate sampling problems in polynomial time, and yet the polynomial hierarchy is infinite…
openalex
Scott Aaronson, Lijie Chen
2016-12-18
置信度 0.72
QubitSampling (signal processing)ConjectureMathematicsDistribution (mathematics)
-
openalex
Barbara M. Terhal
2018-04-20
置信度 0.72
PhysicsQuantumSampling (signal processing)Quantum computerTerm (time)
-
crossref
Jack D. Hidary
2019-08-29T13:01:19Z
置信度 0.70
-
crossref
2021-02-18T08:22:57Z
置信度 0.70
-
crossref
Ramiz Salama, Fadi Al-Turjman
2026-02-24T14:24:45Z
置信度 0.70
-
crossref
2019-09-27T04:07:43Z
置信度 0.70
-
The recent Google’s claim on breakthrough in quantum computing is a gong signal for further analysis of foundational roots of (possible) superiority of some quantum algorithms over the corresponding classical algorithms. This note is a step in this direc…
crossref
Andrei Khrennikov
2019-12-02T14:34:38Z
置信度 0.70
-
Quantum computing emerged as a promising field with the potential to revolutionize various industries. It exists in a unique space within the purview of modern computing technologies. It leverages the exclusive properties offered by quantum physics to process …
crossref
Harbaksh Singh
2025-01-14T10:58:18Z
置信度 0.70
QuantumPolitical sciencePhysicsQuantum mechanics
-
crossref
IGNACIO OZCARIZ
2020-07-11T11:31:53Z
置信度 0.70
-
We introduce a simple sub-universal quantum computing model, which we call the Hadamard-classical circuit with one-qubit (HC1Q) model. It consists of a classical reversible circuit sandwiched by two layers of Hadamard gates, and therefore it is in the second l…
crossref
Tomoyuki Morimae, Yuki Takeuchi, Harumichi Nishimura
2018-11-15T12:40:46Z
置信度 0.70
-
crossref
Swareena Jain, Raman Sehgal, Radha V. Jayaram
2021-10-07T11:57:13Z
置信度 0.70
-
We analyze surface codes, the topological quantum error-correcting codes introduced by Kitaev. In these codes, qubits are arranged in a two-dimensional array on a surface of nontrivial topology, and encoded quantum operations are associated with nontrivial hom…
openalex
Eric Dennis, Alexei Kitaev, Andrew Landahl, John Preskill
2002-09-01
置信度 0.72
Quantum error correctionQubitQuantum algorithmQuantum computerTopology (electrical circuits)
-
The robustness of the integer quantum Hall effect of electron systems is due to the existence of a topological invariant that characterizes the variation of the electron wave function over the Brillouin zone. Topological phenomena are generic features of waves…
openalex
Tomoki Ozawa, Hannah M. Price, A. Amo, Nathan Goldman 等
2019-03-25
置信度 0.72
PhysicsPhotonicsTopology (electrical circuits)Theoretical physicsQuantum mechanics
-
We analyze surface codes, the topological quantum error-correcting codes introduced by Kitaev. In these codes, qubits are arranged in a two-dimensional array on a surface of nontrivial topology, and encoded quantum operations are associated with nontrivial hom…
openalex
Dennis, E, Kitaev, A, Landahl, A, Preskill, J
2001-10-24
置信度 0.72
QubitQuantum error correctionTopology (electrical circuits)Quantum computerQuantum algorithm
-
We propose and analyze an interface between a topological qubit and a superconducting flux qubit. In our scheme, the interaction between Majorana fermions in a topological insulator is coherently controlled by a superconducting phase that depends on the quantu…
openalex
Liang Jiang, C. L. Kane, John Preskill
2011-03-28
置信度 0.72
QubitFlux qubitPhysicsSuperconductivityPhase qubit
-
openalex
Gregor Jotzu, Michael Messer, Rémi Desbuquois, Martin Lebrat 等
2014-11-11
置信度 0.72
PhysicsFermionUltracold atomTopology (electrical circuits)Qubit
-
We study the stability of the topological quantum computation proposals involving Majorana fermions against thermal fluctuations. We use a minimal realistic model of a spinless ${p}_{x}+i{p}_{y}$ superconductor and consider the effect of excited midgap states …
openalex
Meng Cheng, Roman M. Lutchyn, S. Das Sarma
2012-04-16
置信度 0.72
PhysicsQubitMAJORANATopology (electrical circuits)Quantum mechanics
-
We propose a method to coherently transfer quantum information, and to create entanglement, between topological qubits and conventional spin qubits. Our suggestion uses gated control to transfer an electron (spin qubit) between a quantum dot and edge Majorana …
crossref
Martin Leijnse, Karsten Flensberg
2011-11-18T17:00:57Z
置信度 0.70
PhysicsQubitMAJORANAQuantum entanglementQuantum mechanics
-
Research into hybrid quantum systems featuring both conventional and topological qubits is of keen interest for quantum information processing, and a key challenge is to realize a coherent interface between such qubits of different nature. The authors find tha…
crossref
Bo Li, Peng-Bo Li, Yuan Zhou, Jie Liu 等
2019-04-09T14:55:40Z
置信度 0.70
QubitPhysicsTopology (electrical circuits)Flux qubitPhase qubit
-
The principle of balanced holography, introduced in [1], posits that black hole information is stored in non-local correlations between the interior and exterior. Based on this concept, we propose that black hole information decomposes into elementary units in…
openalex
Erik Verlinde, Herman Verlinde
2013-06-03
置信度 0.72
QubitPhysicsTopology (electrical circuits)Theoretical physicsQuantum mechanics
-
We propose computing bus devices that enable quantum information to be coherently transferred between topological and conventional qubits. We describe a concrete realization of such a topological quantum bus acting between a topological qubit in a Majorana wir…
openalex
Parsa Bonderson, Roman M. Lutchyn
2011-03-28
置信度 0.72
PhysicsQubitTopology (electrical circuits)Quantum mechanicsQuantum teleportation
-
Hybrid architectures, consisting of conventional and topological qubits, have recently attracted much attention due to their capability in consolidating robustness of topological qubits and universality of conventional qubits. However, these two kinds of qubit…
openalex
Zheng-Yuan Xue, Ming Gong, Jia Liu, Yong Hu 等
2015-07-28
置信度 0.72
Topology (electrical circuits)QubitPhysicsMAJORANARobustness (evolution)
-
Quantum state transfer is one of the basic tasks in quantum information processing. We here propose a theoretical approach to realize arbitrary entangled state transfer through a qubit chain, which is a class of extended Su-Schrieffer-Heeger models and accommo…
openalex
Chong Wang, Linhu Li, Jiangbin Gong, Yu-xi Liu
2022-11-10
置信度 0.72
QubitPhysicsTopology (electrical circuits)Phase qubitQuantum teleportation
-
Many physical systems considered promising qubit candidates are not, in fact, two-level systems. Such systems can leak out of the preferred computational states, leading to errors on any qubits that interact with leaked qubits. Without specific methods of deal…
crossref
Austin G. Fowler
2013-10-09T11:27:34Z
置信度 0.70
QubitComputer scienceQuantumError detection and correctionLeakage (economics)