Search results for "fluid"

showing 10 items of 5513 documents

Master equation approach to the three-state open Majorana model

2019

The three-state Majorana model in the presence of dissipation is considered. Different models of system-environment interaction are explored, ranging from a situation where dissipation is the main effect to regimes where dephasing is mainly produced. It is shown that the detrimental effects of the noise are stronger in the presence of dissipation than in the presence of dephasing. The role of temperature is also discussed.

PhysicsQuantum PhysicsDephasingquantum noiseFOS: Physical sciencesState (functional analysis)Dissipation01 natural sciencesNoise (electronics)spin systemSettore FIS/03 - Fisica Della Materia010305 fluids & plasmasMAJORANALandau-ZenerQuantum mechanics0103 physical sciencesMaster equationMain effect010306 general physicsQuantum Physics (quant-ph)decoherence
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Generation of minimum energy entangled states

2020

Quantum technologies exploiting bipartite entanglement could be made more efficient by using states having the minimum amount of energy for a given entanglement degree. Here, we study how to generate these states in the case of a bipartite system of arbitrary finite dimension either by applying a unitary transformation to its ground state or through a zero-temperature thermalization protocol based on turning on and off a suitable interaction term between the subsystems. In particular, we explicitly identify three possible unitary operators and five possible interaction terms. On the one hand, two of the three unitary transformations turn out to be easily decomposable in terms of local eleme…

PhysicsQuantum PhysicsEnergyDegree (graph theory)Dimension (graph theory)FOS: Physical sciencesQuantum entanglementUnitary transformation01 natural sciencesUnitary state010305 fluids & plasmasEntanglementQuantum technology0103 physical sciencesBipartite graphStatistical physicsQuantum Physics (quant-ph)010306 general physicsGround stateGeneration of states
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Temperature effects on quantum non-Markovianity via collision models

2018

Quantum non-Markovianity represents memory during the system dynamics, which is typically weakened by the temperature. We here study the effects of environmental temperature on the non-Markovianity of an open quantum system by virtue of collision models. The environment is simulated by a chain of ancillary qubits that are prepared in thermal states with a finite temperature $T$. Two distinct non-Markovian mechanisms are considered via two types of collision models, one where the system $S$ consecutively interacts with the ancillas and a second where $S$ collides only with an intermediate system $S'$ which in turn interacts with the ancillas. We show that in both models the relation between …

PhysicsQuantum PhysicsFOS: Physical sciencesCollision modelMemory effectnon-MarkovianityCollision01 natural sciencesTemperature effectsSettore FIS/03 - Fisica Della Materia010305 fluids & plasmasSystem dynamicsOpen quantum systemOpen quantum systemQubitQuantum mechanics0103 physical sciencesThermalQuantum Physics (quant-ph)010306 general physicsQuantumCoherence (physics)BackflowPhysical Review A
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CP symmetry and thermal effects on Dirac bi-spinor spin–parity local correlations

2018

Intrinsic quantum correlations supported by the $SU(2)\otimes SU(2)$ structure of the Dirac equation used to describe particle/antiparticle states, optical ion traps and bilayer graphene are investigated and connected to the description of local properties of Dirac bi-spinors. For quantum states driven by Dirac-like Hamiltonians, quantum entanglement and geometric discord between spin and parity degrees of freedom - sometimes mapped into equivalent low energy internal degrees of freedom - are obtained. Such \textit{spin-parity} quantum correlations and the corresponding nonlocal intrinsic structures of bi-spinor fermionic states can be classified in order to relate quantum observables to th…

PhysicsQuantum PhysicsFOS: Physical sciencesGeneral Physics and AstronomyCHSH inequalityObservableParity (physics)Quantum entanglement01 natural sciences010305 fluids & plasmassymbols.namesakeHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Local hidden variable theoryQuantum stateQuantum mechanicsDirac equation0103 physical sciencessymbolsQuantum Physics (quant-ph)010306 general physicsQuantum
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Entanglement amplification in the nonperturbative dynamics of modular quantum systems

2013

We analyze the conditions for entanglement amplification between distant and not directly interacting quantum objects by their common coupling to media with static modular structure and subject to a local (single-bond) quenched dynamics. We show that in the non-perturbative regime of the dynamics the initial end-to-end entanglement is strongly amplified and, moreover, can be distributed efficiently between distant objects. Due to its intrinsic local and non-perturbative nature the dynamics is fast and robust against thermal fluctuations, and its control is undemanding. We show that the origin of entanglement amplification lies in the interference of the ground state and at most one of the l…

PhysicsQuantum PhysicsFOS: Physical sciencesQuantum entanglementSquashed entanglement01 natural sciencesAtomic and Molecular Physics and Optics010305 fluids & plasmassymbols.namesakeQubitQuantum mechanics0103 physical sciencessymbolsSpectral gap010306 general physicsQuantum information scienceHamiltonian (quantum mechanics)Quantum Physics (quant-ph)entanglementQuantumEigenvalues and eigenvectors
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Oscillatory Localization of Quantum Walks Analyzed by Classical Electric Circuits

2016

We examine an unexplored quantum phenomenon we call oscillatory localization, where a discrete-time quantum walk with Grover's diffusion coin jumps back and forth between two vertices. We then connect it to the power dissipation of a related electric network. Namely, we show that there are only two kinds of oscillating states, called uniform states and flip states, and that the projection of an arbitrary state onto a flip state is bounded by the power dissipation of an electric circuit. By applying this framework to states along a single edge of a graph, we show that low effective resistance implies oscillatory localization of the quantum walk. This reveals that oscillatory localization occ…

PhysicsQuantum PhysicsFOS: Physical sciencesState (functional analysis)Edge (geometry)Dissipation01 natural sciencesProjection (linear algebra)010305 fluids & plasmasQuantum mechanicsBounded function0103 physical sciencesQuantum walkStatistical physics010306 general physicsQuantum Physics (quant-ph)QuantumElectronic circuit
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Electric quantum walks in two dimensions

2015

We study electric quantum walks in two dimensions considering Grover, Alternate, Hadamard, and DFT quantum walks. In the Grover walk the behaviour under an electric field is easy to summarize: when the field direction coincides with the x or y axes, it produces a transient trapping of the probability distribution along the direction of the field, while when it is directed along the diagonals, a perfect 2D trapping is frustrated. The analysis of the alternate walk helps to understand the behaviour of the Grover walk as both walks are partially equivalent; in particular, it helps to understand the role played by the existence of conical intersections in the dispersion relations, as we show th…

PhysicsQuantum PhysicsField (physics)DiagonalFOS: Physical sciences01 natural sciences010305 fluids & plasmasDiscrete Fourier transform (general)Hadamard transformQuantum mechanicsDispersion relationElectric field0103 physical sciencesProbability distributionQuantum walkStatistical physics010306 general physicsQuantum Physics (quant-ph)
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Information geometry of Gaussian channels

2009

We define a local Riemannian metric tensor in the manifold of Gaussian channels and the distance that it induces. We adopt an information-geometric approach and define a metric derived from the Bures-Fisher metric for quantum states. The resulting metric inherits several desirable properties from the Bures-Fisher metric and is operationally motivated from distinguishability considerations: It serves as an upper bound to the attainable quantum Fisher information for the channel parameters using Gaussian states, under generic constraints on the physically available resources. Our approach naturally includes the use of entangled Gaussian probe states. We prove that the metric enjoys some desir…

PhysicsQuantum PhysicsGaussianFOS: Physical sciencesMathematical Physics (math-ph)01 natural sciencesAtomic and Molecular Physics and Optics010305 fluids & plasmasStatistical manifoldIntrinsic metricCondensed Matter - Other Condensed Mattersymbols.namesakeQuantum mechanics0103 physical sciencesMetric (mathematics)symbolsApplied mathematicsInformation geometryFidelity of quantum statesQuantum Physics (quant-ph)010306 general physicsQuantum information scienceFisher information metricMathematical PhysicsOther Condensed Matter (cond-mat.other)
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Generalized Interaction-Free Evolutions

2015

A thorough analysis of the evolutions of bipartite systems characterized by the \lq effective absence\rq\, of interaction between the two subsystems is reported. First, the connection between the concepts underlying Interaction-Free Evolutions (IFE) and Decoherence-Free Subspaces (DFS) is explored, showing intricate relations between these concepts. Second, starting from this analysis and inspired by a generalization of DFS already known in the literature, we introduce the notion of generalized IFE (GIFE), also providing a useful characterization that allows to develop a general scheme for finding GIFE states.

PhysicsQuantum PhysicsGeneralizationFOS: Physical sciencesCharacterization (mathematics)01 natural sciencesLinear subspaceQuantum mechanicSettore FIS/03 - Fisica Della Materia010305 fluids & plasmasConnection (mathematics)AlgebraEntanglementScheme (mathematics)0103 physical sciencesBipartite graph010306 general physicsDistributed File SystemQuantum Physics (quant-ph)
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Classes of Exactly Solvable Generalized Semi-Classical Rabi Systems

2018

The exact quantum dynamics of a single spin-1/2 in a generic time-dependent classical magnetic field is investigated and compared with the quantum motion of a spin-1/2 studied by Rabi and Schwinger. The possibility of regarding the scenario studied in this paper as a generalization of that considered by Rabi and Schwinger is discussed and a notion of time-dependent resonance condition is introduced and carefully legitimated and analysed. Several examples help to disclose analogies and departures of the quantum motion induced in a generalized Rabi system with respect to that exhibited by the spin-1/2 in a magnetic field precessing around the $z$-axis. We find that, under generalized resonanc…

PhysicsQuantum PhysicsGeneralizationQuantum dynamicssemiclassical Rabi modelTime evolutionFOS: Physical sciencesGeneral Physics and AstronomyMonotonic functionexactly solvable time-dependent model01 natural sciencesResonance (particle physics)010305 fluids & plasmasMagnetic fieldPhysics and Astronomy (all)0103 physical sciencesexact single-qubit dynamicQuantum Physics (quant-ph)010306 general physicsQuantumEigenvalues and eigenvectorsMathematical physics
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