Search results for "Emerging technologies"

showing 10 items of 317 documents

Microwave-induced coupling of superconducting qubits

2008

We investigate the quantum dynamics of a system of two coupled superconducting qubits under microwave irradiation. We find that, with the qubits operated at the charge co-degeneracy point, the quantum evolution of the system can be described by a new effective Hamiltonian which has the form of two coupled qubits with tunable coupling between them. This Hamiltonian can be used for experimental tests on macroscopic entanglement and for implementing quantum gates.

PhysicsQuantum PhysicsQuantum networkCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed Matter - SuperconductivityFOS: Physical sciencesQuantum PhysicsCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsSuperconductivity (cond-mat.supr-con)Quantum technologyComputer Science::Emerging TechnologiesQuantum gateQuantum error correctionQuantum mechanicsMesoscale and Nanoscale Physics (cond-mat.mes-hall)Superconducting tunnel junctionW stateQuantum Physics (quant-ph)Superconducting quantum computingComputer Science::DatabasesTrapped ion quantum computerPhysical Review B
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Entanglement dynamics of two independent qubits in environments with and without memory

2007

A procedure to obtain the dynamics of $N$ independent qudits ($d$-level systems) each interacting with its own reservoir, for any arbitrary initial state, is presented. This is then applied to study the dynamics of the entanglement of two qubits, initially in an extended Werner-like mixed state with each of them in a zero temperature non-Markovian environment. The dependence of the entanglement dynamics on the purity and degree of entanglement of the initial states and on the amount of non-Markovianity is also given. This extends the previous work about non-Markovian effects on the two-qubit entanglement dynamics for initial Bell-like states [B. Bellomo \textit{et al.}, Phys. Rev. Lett. \te…

PhysicsQuantum PhysicsSettore FIS/02 - Fisica Teorica Modelli E Metodi MatematiciQuantum decoherence03.65.UdCluster stateFOS: Physical sciencesQuantum entanglementQuantum PhysicsSquashed entanglementMultipartite entanglementAtomic and Molecular Physics and OpticsComputer Science::Emerging Technologies03.67.MnQuantum mechanicsQubit03.65.YzW stateQuantum Physics (quant-ph)Entanglement witness
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Quantum Nondemolition Gate Operations and Measurements in Real Time on Fluctuating Signals

2017

We demonstrate an optical quantum nondemolition (QND) interaction gate with a bandwidth of about 100 MHz. Employing this gate, we are able to perform QND measurements in real time on randomly fluctuating signals. Our QND gate relies on linear optics and offline-prepared squeezed states. In contrast to previous demonstrations on narrow sideband modes, our gate is compatible with quantum states temporally localized in a wave-packet mode including non-Gaussian quantum states. This is the cornerstone of realizing quantum error correction and universal gate operations.

PhysicsQuantum PhysicsSidebandBandwidth (signal processing)FOS: Physical sciencesQuantum Physics01 natural sciences010309 opticsLinear opticsComputer Science::Hardware ArchitectureComputer Science::Emerging TechnologiesQuantum error correctionQuantum stateQuantum mechanics0103 physical sciencesHardware_INTEGRATEDCIRCUITS010306 general physicsQuantum Physics (quant-ph)Quantum
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Generation of multipartite entangled states in Josephson architectures

2006

We propose and analyze a scheme for the generation of multipartite entangled states in a system of inductively coupled Josephson flux qubits. The qubits have fixed eigenfrequencies during the whole process in order to minimize decoherence effects and their inductive coupling can be turned on and off at will by tuning an external control flux. Within this framework, we will show that a W state in a system of three or more qubits can be generated by exploiting the sequential one by one coupling of the qubits with one of them playing the role of an entanglement mediator.

PhysicsQuantum computers Quantum optics flux qubitsQuantum PhysicsBell stateFlux qubitCondensed Matter - SuperconductivityCluster stateFOS: Physical sciencesWIGNER-FUNCTIONQuantum entanglementQuantum PhysicsQUANTUM-STATECondensed Matter PhysicsCOMPUTATIONElectronic Optical and Magnetic MaterialsSuperconductivity (cond-mat.supr-con)MultipartiteComputer Science::Emerging TechnologiesQuantum mechanicsTOMOGRAPHYW stateQuantum Physics (quant-ph)Superconducting quantum computingEntanglement distillationCHARGE QUBITS
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Deterministic quantum teleportation of photonic quantum bits by a hybrid technique.

2014

The continuous-variable teleportation of a discrete-variable, photonic qubit is deterministic and allows for faithful qubit transfer even with imperfect continuous-variable entangled states: for four qubits, the overall transfer fidelities all exceed the classical limit of teleportation. Quantum teleportation is one of the most important elementary protocols in quantum information processing. Previous studies have achieved quantum teleportation, but usually randomly and at low rates. Two groups reporting in this issue of Nature have used contrasting methods to achieve the same aim —more efficient quantum teleportation. Takeda et al. describe the experimental realization of fully determinist…

PhysicsQuantum networkBell stateQuantum PhysicsMultidisciplinaryFOS: Physical sciencesQuantum channelQuantum PhysicsQuantum energy teleportationComputer Science::Emerging TechnologiesSuperdense codingQubitQuantum mechanicsNo-teleportation theoremQuantum Physics (quant-ph)Quantum teleportationNature
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Quantum teleportation of an optical qutrit

2017

Quantum teleportation is an important building block of quantum information processing. For practical applications, a quantum teleporter with the potential to include quantum error correction should be realized.

PhysicsQuantum networkQuantum PhysicsQuantum capacityQuantum channel01 natural sciences010305 fluids & plasmasQuantum technologyComputer Science::Emerging TechnologiesQuantum error correctionQuantum mechanicsQubit0103 physical sciencesQuantum information010306 general physicsQuantum teleportation2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)
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Mixed internal-external state approach for quantum computation with neutral atoms on atom chips

2006

We present a realistic proposal for the storage and processing of quantum information with cold Rb atoms on atom chips. The qubit states are stored in hyperfine atomic levels with long coherence time, and two-qubit quantum phase gates are realized using the motional states of the atoms. Two-photon Raman transitions are used to transfer the qubit information from the internal to the external degree of freedom. The quantum phase gate is realized in a double-well potential created by slowly varying dc currents in the atom chip wires. Using realistic values for all experimental parameters (currents, magnetic fields, ...) we obtain high gate fidelities (above 99.9%) in short operation times (~ 1…

PhysicsQuantum technologyOpen quantum systemComputer Science::Emerging TechnologiesQubitPrincipal quantum numberQuantum simulatorPhysics::Atomic PhysicsQuantum informationAtomic physicsQuantum numberQuantum computer
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Time-optimal control of the purification of a qubit in contact with a structured environment

2019

We investigate the time-optimal control of the purification of a qubit interacting with a structured environment, consisting of a strongly coupled two-level defect in interaction with a thermal bath. On the basis of a geometric analysis, we show for weak and strong interaction strengths that the optimal control strategy corresponds to a qubit in resonance with the reservoir mode. We investigate under which conditions qubit coherence and correlation between the qubit and the environment can speed up the control process.

PhysicsSpeedupGeometric analysisStrong interactionQuantum PhysicsOptimal controlTime optimalTopology01 natural sciences010305 fluids & plasmasComputer Science::Emerging TechnologiesQubit0103 physical sciencesThermal010306 general physicsCoherence (physics)Physical Review A
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Anatomy of spin–orbit torques

2017

The use of time-resolved X-ray microscopy allows a direct visualization of the magnetization switching for nanomagnets under the effect of spin–orbit torques.

PhysicsSpintronicsCondensed matter physicsBiomedical EngineeringBioengineering02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesNanomagnetAtomic and Molecular Physics and OpticsCondensed Matter::Materials ScienceMagnetizationComputer Science::Emerging Technologies0103 physical sciencesTorqueGeneral Materials ScienceAstrophysics::Earth and Planetary AstrophysicsElectrical and Electronic EngineeringOrbit (control theory)010306 general physics0210 nano-technologySpin (physics)Nature Nanotechnology
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Switching synchronization in one-dimensional memristive networks: An exact solution.

2017

We study a switching synchronization phenomenon taking place in one-dimensional memristive networks when the memristors switch from the high- to low-resistance state. It is assumed that the distributions of threshold voltages and switching rates of memristors are arbitrary. Using the Laplace transform, a set of nonlinear equations describing the memristors dynamics is solved exactly, without any approximations. The time dependencies of memristances are found, and it is shown that the voltage falls across memristors are proportional to their threshold voltages. A compact expression for the network switching time is derived.

Physicsbusiness.product_categoryLaplace transformMemristorTopology01 natural sciencesSynchronization010305 fluids & plasmaslaw.inventionNonlinear systemComputer Science::Emerging TechnologiesExact solutions in general relativitylaw0103 physical sciencesNetwork switchState (computer science)010306 general physicsbusinessVoltagePhysical review. E
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