Search results for "Adiabatic process"

showing 10 items of 237 documents

Optimization of population transfer by adiabatic passage

2002

We examine the adiabatic limit of population transfer in two-level models driven by a chirped laser field. We show that the nonadiabatic correction is minimized when the adiabatic eigenenergies associated to the dynamics are parallel. In the diagram of the difference of the eigenenergy surfaces as a function of the parameters, this corresponds to an adiabatic passage along a level line. The analytical arguments are based on the Dykhne-Davis-Pechukas treatment. We illustrate this behavior with various examples.

PhysicsField (physics)DiagramFunction (mathematics)Population transferLaserAdiabatic quantum computationAtomic and Molecular Physics and Opticslaw.inventionClassical mechanicslawQuantum electrodynamicsLimit (mathematics)Physics::Chemical PhysicsAdiabatic processPhysical Review A
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State-selective chirped adiabatic passage on dynamically laser-aligned molecules

2005

We show that rovibrational state selectivity can be achieved by chirped adiabatic passage of molecules that are adiabatically aligned by a nonresonant laser field. We develop the tools to design the appropriate frequency and amplitude modulations that allow us to select a given route in the Hilbert space that leads to a final complete excitation of the chosen state, by infrared or by Raman processes. This method allows us to select a given vibrational state in a well-defined rotational $J$ state.

PhysicsField (physics)Rotational–vibrational spectroscopyLaserAtomic and Molecular Physics and Opticslaw.inventionsymbols.namesakeAmplitudelawQuantum mechanicsModulation (music)symbolsPhysics::Atomic PhysicsAtomic physicsRaman spectroscopyAdiabatic processExcitationPhysical Review A
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Control of Quantum Dynamics by Laser Pulses: Adiabatic Floquet Theory

2003

PhysicsFloquet theoryCoherent controllawQuantum mechanicsQuantum dynamicsQuantum electrodynamicsAdiabatic processLaserlaw.invention
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Control of Localization and Suppression of Tunneling by Adiabatic Passage

2004

We show that a field of frequency $\ensuremath{\omega}$ combined with its second harmonic $2\ensuremath{\omega}$ driving a double-well potential allows us to localize the wave packet by adiabatic passage, starting from the delocalized ground state. The relative phase of the fields allows us to choose the well of localization. We can suppress (and restore) the tunneling subsequently by switching on (and off) abruptly the fields at well-defined times. The mechanism relies on the fact that the dynamics is driven to an eigenstate of the Floquet Hamiltonian which is a localized state.

PhysicsFloquet theoryQuantum opticsGeneral Physics and AstronomyCondensed Matter::Mesoscopic Systems and Quantum Hall Effectsymbols.namesakeDelocalized electronQuantum mechanicssymbolsCoherent statesAdiabatic processGround stateHamiltonian (quantum mechanics)Quantum tunnellingPhysical Review Letters
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Simulating long-distance entanglement in quantum spin chains by superconducting flux qubits

2014

We investigate the performance of superconducting flux qubits for the adiabatic quantum simulation of long distance entanglement (LDE), namely a finite ground-state entanglement between the end spins of a quantum spin chain with open boundary conditions. As such, LDE can be considered an elementary precursor of edge modes and topological order. We discuss two possible implementations which simulate open chains with uniform bulk and weak end bonds, either with Ising or with XX nearest-neighbor interactions. In both cases we discuss a suitable protocol for the adiabatic preparation of the ground state in the physical regimes featuring LDE. In the first case the adiabatic manipulation and the …

PhysicsFlux qubitQuantum PhysicsFOS: Physical sciencesQuantum simulatorQuantum entanglementSquashed entanglementAdiabatic quantum computationAtomic and Molecular Physics and OpticsCondensed Matter - Other Condensed MatterQuantum electrodynamicsQuantum mechanicsTopological orderQuantum Physics (quant-ph)Adiabatic processSuperconducting quantum computingOther Condensed Matter (cond-mat.other)
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Flavor of cosmic neutrinos preserved by ultralight dark matter

2019

Within the standard propagation scenario, the flavor ratios of high-energy cosmic neutrinos at neutrino telescopes are expected to be around the democratic benchmark resulting from hadronic sources, $\left( 1 : 1 : 1 \right)_\oplus$. We show how the coupling of neutrinos to an ultralight dark matter complex scalar field would induce an effective neutrino mass that could lead to adiabatic neutrino propagation. This would result in the preservation at the detector of the production flavor composition of neutrinos at sources. This effect could lead to flavor ratios at detectors well outside the range predicted by the standard scenario of averaged oscillations. We also present an electroweak-in…

PhysicsHigh Energy Astrophysical Phenomena (astro-ph.HE)Particle physicsRange (particle radiation)COSMIC cancer database010308 nuclear & particles physicsPhysics::Instrumentation and DetectorsAstrophysics::High Energy Astrophysical PhenomenaDark matterHadronHigh Energy Physics::PhenomenologyFOS: Physical sciencesCoupling (probability)Computer Science::Digital Libraries7. Clean energy01 natural sciencesHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)0103 physical sciencesHigh Energy Physics::ExperimentNeutrino010306 general physicsAdiabatic processAstrophysics - High Energy Astrophysical PhenomenaScalar field
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Adiabatic regularization with a Yukawa interaction

2017

We extend the adiabatic regularization method for an expanding universe to include the Yukawa interaction between quantized Dirac fermions and a homogeneous background scalar field. We give explicit expressions for the renormalized expectation values of the stress-energy tensor $\langle T_{\mu\nu} \rangle$ and the bilinear $\langle \bar\psi\psi\rangle$ in a spatially flat FLRW spacetime. These are basic ingredients in the semiclassical field equations of fermionic matter in curved spacetime interacting with a background scalar field. The ultraviolet subtracting terms of the adiabatic regularization can be naturally interpreted as coming from appropriate counterterms of the background fields…

PhysicsHigh Energy Physics - Theory010308 nuclear & particles physicsConformal anomalyHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologySemiclassical physicsFOS: Physical sciencesGeneral Relativity and Quantum Cosmology (gr-qc)Yukawa interaction01 natural sciencesGeneral Relativity and Quantum Cosmologysymbols.namesakeGeneral Relativity and Quantum CosmologyHigh Energy Physics - Theory (hep-th)Quantum mechanicsRegularization (physics)Friedmann–Lemaître–Robertson–Walker metric0103 physical sciencessymbols010306 general physicsAdiabatic processScalar fieldEffective actionMathematical physics
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Role of gravity in the pair creation induced by electric fields

2018

We analyze the pair production induced by homogenous, time-dependent electric fields in an expanding space-time background. We point out that, in obtaining the semiclassical Maxwell equations, two distinct notions of adiabatic renormalization are possible. In Minkowski space the two recipes turn out to be equivalent. However, in the presence of gravity only the recipe requiring an adiabatic hierarchy between the gravitational and the gauge field is consistent with the conservation of the energy-momentum tensor.

PhysicsHigh Energy Physics - Theory010308 nuclear & particles physicsSemiclassical physicsFOS: Physical sciencesGeneral Relativity and Quantum Cosmology (gr-qc)01 natural sciencesGeneral Relativity and Quantum CosmologyRenormalizationGravitationsymbols.namesakeClassical mechanicsMaxwell's equationsHigh Energy Physics - Theory (hep-th)0103 physical sciencesMinkowski spacesymbolsTensorGauge theory010306 general physicsAdiabatic process
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Adiabatic regularization for spin-1/2 fields

2013

We extend the adiabatic regularization method to spin-1/2 fields. The ansatz for the adiabatic expansion for fermionic modes differs significantly from the WKB-type template that works for scalar modes. We give explicit expressions for the first adiabatic orders and analyze particle creation in de Sitter spacetime. As for scalar fields, the adiabatic method can be distinguished by its capability to overcome the UV divergences of the particle number operator. We also test the consistency of the extended method by working out the conformal and axial anomalies for a Dirac field in a Friedmann-Lemaitre-Robertson-Walker spacetime, in exact agreement with those obtained from other renormalization…

PhysicsHigh Energy Physics - TheoryNuclear and High Energy PhysicsCosmology and Nongalactic Astrophysics (astro-ph.CO)Quantum field theory in curved spacetimeParticle creationField (physics)De Sitter spaceScalar (physics)FOS: Physical sciencesGeneral Relativity and Quantum Cosmology (gr-qc)General Relativity and Quantum CosmologyRenormalizationTheoretical physicsGeneral Relativity and Quantum CosmologyHigh Energy Physics - Theory (hep-th)Regularization (physics)Stress–energy tensorFísica nuclearEnergy-momentum tensorAdiabatic processAstrophysics - Cosmology and Nongalactic Astrophysics
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Equivalence of Adiabatic and DeWitt-Schwinger renormalization schemes

2014

We prove that adiabatic regularization and DeWitt-Schwinger point-splitting provide the same result for the renormalized expectation values of the stress-energy tensor for spin-$1/2$ fields. This generalizes the equivalence found for scalar fields, which is here recovered in a different way. We also argue that the coincidence limit of the DeWitt-Schwinger proper time expansion of the two-point function exactly agrees with the analogous expansion defined by the adiabatic regularization method at any order (for both scalar and spin-$1/2$ fields). We also illustrate the power of the adiabatic method to compute higher order DeWitt coefficients in FLRW universes.

PhysicsHigh Energy Physics - TheoryNuclear and High Energy PhysicsQuantum field theory in curved spacetimeFísicaFOS: Physical sciencesGeneral Relativity and Quantum Cosmology (gr-qc)CosmologyCoincidenceGeneral Relativity and Quantum CosmologyRenormalizationGeneral Relativity and Quantum CosmologyHigh Energy Physics - Theory (hep-th)Regularization (physics)Quantum mechanicsProper timeAdiabatic processMathematical physics
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