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181
Quantum Internet: key technologies and future prospect
Published 2022-02-01Subjects: “…quantum Internet…”
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182
Multi-party controlled quantum communication protocol
Published 2015-06-01“…In order to satisfy the requirements of long-distance multi-node quantum networks,two multi-party controlledquantum communication protocols are put forward via maximally and partially entangled quantum channels.For the maximally entangled channels,projective measurements are used to realizemulti-party controlled joint remote preparation of an arbitrary four-qubitX-state.For the partially entangled channels,collective unitary operations and optimal positive operator-valued measures are used to realize multi-party controlled joint remote preparation of an arbitrary four-qubitX-state.The theoretical analysis shows that the efficiency of the first scheme can be up to 100% which is suprior to that of others.In addition,the efficiency of the second scheme is effectively improved and the way to be used to construct two kinds of measurement methods can be utilized in the similar protocols.…”
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183
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Geometry Induced Localization of Electrons in Quantum Pillars
Published 1997-01-01“…This model is a representation of a quantum pillar on a substrate, a nanostructure with potential device applications. …”
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185
Blind signature scheme based on entangled quantum
Published 2016-02-01Subjects: “…quantum information…”
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186
On geometric bases for quantum A-polynomials of knots
Published 2025-01-01“…A simple geometric way is suggested to derive the Ward identities in the Chern-Simons theory, also known as quantum A- and C-polynomials for knots. In quasi-classical limit it is closely related to the well publicized augmentation theory and contact geometry. …”
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187
Sequential double quantum blind signature protocol
Published 2015-09-01Subjects: “…quantum information…”
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188
Classical and quantum algorithms for many-body problems
Published 2025-01-01Subjects: Get full text
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189
Multidisk Clutch Optimization Using Quantum Annealing
Published 2024-01-01Subjects: Get full text
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190
A Probability Distribution for Quantum Tunneling Times
Published 2018-01-01“…We propose a general expression for the probability distribution of real-valued tunneling times of a localized particle, as measured by the Salecker-Wigner-Peres quantum clock. This general expression is used to obtain the distribution of times for the scattering of a particle through a static rectangular barrier and for the tunneling decay of an initially bound state after the sudden deformation of the potential, the latter case being relevant to understand tunneling times in recent attosecond experiments involving strong field ionization.…”
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191
On Kadison-Schwarz Type Quantum Quadratic Operators on
Published 2013-01-01“…We study the description of Kadison-Schwarz type quantum quadratic operators (q.q.o.) acting from into . …”
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192
Exploring quantum materials and applications: a review
Published 2025-01-01Subjects: “…Quantum materials…”
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193
Quantum Private Comparison Protocol with Cluster States
Published 2025-01-01Subjects: “…quantum private comparison…”
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194
Analysis of the amplitude form of the quantum hash function
Published 2023-11-01Subjects: “…quantum cryptography…”
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195
Optimal Partitioning of Quantum Circuits Using Gate Cuts and Wire Cuts
Published 2024-01-01Subjects: “…Quantum circuit…”
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196
Shaping the future of commercial quantum computer and the challenge for information security
Published 2016-03-01Subjects: “…Canadian quantum computer…”
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197
Refraction of the Two-Photon Multimode Field via a Three-Level Atom
Published 2025-01-01Subjects: “…quantum optics…”
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198
Fractional Quantum Field Theory: From Lattice to Continuum
Published 2014-01-01“…A fractional-order analog of the lattice quantum field theories is considered. Lattice analogs of the fractional-order 4-dimensional differential operators are proposed. …”
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199
A note on asymptotic helix and quantum mechanical structure
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Charge-conserving equilibration of quantum Hall edge states
Published 2025-01-01“…We address the experimentally relevant situation, where a nonequilibrium state is created by injecting charge current into a chiral quantum Hall edge state. We show that the commonly accepted picture of the full equilibration of a nonequilibrium state at finite distances contradicts the charge-conservation requirement. …”
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