Search results for "LEVEL"

showing 10 items of 3465 documents

Electron Capture Processes in Intermediate Mass stars

2015

Intermediate mass stars develop a degenerate core constituted of O, Ne and Mg during their evolution. As the density in the core increases electron capture sets in igniting Ne and O burning. Particularly important is electron capture on 20Ne that has been found recently to be dominated by a second forbidden transition from the 0+ ground state of 20Ne to the 2+ ground state of 20F. We have performed shell–model calculations to determine the transition strength and provide an updated value of the electron capture rate and the expected branching ratio to the corresponding β–decay process. peerReviewed

PhysicsCore (optical fiber)StarsTransition strengthBranching fractionElectron captureelectron capture processesDegenerate energy levelsAtomic physicsGround state
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Energy-level repulsion by spin-orbit coupling in two-dimensional Rydberg excitons

2018

We study the effects of Rashba spin-orbit coupling on two-dimensional Rydberg exciton systems. Using analytical and numerical arguments we demonstrate that this coupling considerably modifies the wave functions and leads to a level repulsion that results in a deviation from the Poissonian statistics of the adjacent level distance distribution. This signifies the crossover to non-integrability of the system and hints on the possibility of quantum chaos emerging. Such a behavior strongly differs from the classical realization, where spin-orbit coupling produces highly entangled, chaotic electron trajectories in an exciton. We also calculate the oscillator strengths and show that randomization…

PhysicsCouplingLevel repulsionCondensed Matter - Mesoscale and Nanoscale PhysicsExcitonHYDROGEN-ATOMFOS: Physical sciences02 engineering and technologyElectronSpin–orbit interaction021001 nanoscience & nanotechnology01 natural sciencesQuantum chaossymbols.namesakeQUANTUM CHAOSGASQuantum mechanicsMesoscale and Nanoscale Physics (cond-mat.mes-hall)0103 physical sciencesRydberg formulasymbols010306 general physics0210 nano-technologyRealization (systems)Physical Review B
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High-order harmonic emission from a three-level atom in a laser field

1999

Abstract The spectrum emitted by a three-level atom in the presence of a weak laser field is given together with the population dynamics and the phase of the Fourier transform of the acceleration. Calculations show that the spectrum can be very different from that emitted by a two-level atom. When the trapping conditions are obtained, the coupling to the third level can result in a large change in the spectrum.

PhysicsCouplingeducation.field_of_studyField (physics)Harmonics generationPopulationQuantum opticPhase (waves)Three-level atomLaserAtomic and Molecular Physics and Opticslaw.inventionAtom lasersymbols.namesakeFourier transformlawAtomsymbolsPhysics::Atomic PhysicsAtomic physicseducationComputer Science::Databases
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Dynamics of a two-state system through a real level crossing

2015

The dynamics of a two-state system whose energies undergo a real crossing at some instant of time is studied. At this instant, both the coupling and the detuning vanish simultaneously, which leads to an exact degeneracy of the eigenenergies of the system. It is found that the dynamics of the system is primarily determined by the manner in which the degeneracy occurs. This interesting behavior is reminiscent of a symmetry breaking process, since the totally symmetric situation occurring at the crossing is significantly altered by infinitesimal quantities, which remove the degeneracy, with very important dynamical implications from there on. A very simple analytical formula is derived, which …

PhysicsCouplingeducation.field_of_studyQuantum PhysicsAtomic Physics (physics.atom-ph)InfinitesimalDynamics (mechanics)PopulationFOS: Physical sciencesLevel crossingAtomic and Molecular Physics and OpticsSettore FIS/03 - Fisica Della MateriaPhysics - Atomic PhysicsClassical mechanicsSimple (abstract algebra)Degeneracy (biology)Quantum Physics (quant-ph)educationInteraction of Light and Matter Level crossing Two-state systemsInstant
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Isomer Spectroscopy in90216Th126and the Magicity of92218U126

2001

Excited states in (216)Th were investigated via prompt and delayed gamma decays and the recoil-decay tagging method. The decay schemes of the I(pi) = (8+), t(1/2) = 128(8) micros, the I(pi) = (11-), t(1/2) = 615(55) ns, and the I(pi) = (14+), t(1/2) > or = 130 ns isomers were established. The configuration pi h(9/2)f(7/2) is assigned to the I(pi) = (8+) isomer, which implies that the h(9/2) and f(7/2) states are nearly degenerate. This is ascribed to increased binding of the f(7/2) orbital by its coupling to a low-lying I(pi) = (3-) state at E(x) = 1687 keV. The role of octupole and pairing correlations for a Z = 92 shell closure prediction is discussed on the basis of shell model calculati…

PhysicsCrystallographyNuclear magnetic resonancePairingExcited stateDegenerate energy levelsSHELL modelPiGeneral Physics and AstronomySpectroscopyPhysical Review Letters
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Calculations of Stark-broadened line shapes in phase-conjugate degenerate four-wave mixing laser spectroscopy

2005

The Stark-broadened line shapes for phase-conjugate degenerate four-wave mixing (PCDFWM) laser spectroscopy are studied. The line profiles are calculated for high-density $({N}_{e}g{10}^{21}\phantom{\rule{0.3em}{0ex}}{\mathrm{m}}^{\ensuremath{-}3})$ plasma conditions and for different contributions of the Doppler broadening. Calculations are performed in the limit of low laser intensities using the perturbation approach. The theoretical model takes into account the Stark effect together with the ion dynamics, the electron collisions, and the Doppler effect. The resultant PCDFWM spectral profiles are significantly less broadened and less asymmetric than the emission profiles but shifted by s…

PhysicsDegenerate energy levelsElectronLaserIonlaw.inventionsymbols.namesakeStark effectlawsymbolsPhysics::Atomic PhysicsAtomic physicsSpectroscopyDoppler effectDoppler broadening
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The algebra eigenstates method for some systems with spin-like interactions

2006

International audience; An extension of the algebra eigenstates formalism is proposed to solve the eigenvalue equation for a class of problems involving "spin interactions". The method is detailed for the harmonic oscillator, su(2) and su(1, 1) algebras. Special emphasis is given to the resolution of problems in vibronic spectroscopy involving doubly degenerate electronic states.

PhysicsDegenerate energy levelsGeneral Physics and Astronomycoherent statesElectronic statesAlgebraFormalism (philosophy of mathematics)algebraic methods[ PHYS.PHYS.PHYS-AO-PH ] Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph]vibronic spectroscopyCoherent statesVibronic spectroscopyalgebra eigenstatesHarmonic oscillatorEigenvalues and eigenvectorsGroup theory
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Multiphase patterns in a degenerate nonlinear oscillator

2017

Degenerate four-wave mixing (DFWM) oscillators are phase-bistable devices. In such systems, two equivalent states, of equal intensities but opposite phases can be generated. When the cavity Fresnel number is large, different regions of the beam transverse section can have different phases, leading to phase patterns like phase fronts (or domain walls), i.e. ID structures separating regions with opposite phase that manifest as dark lines (as the phase jumps by π across the wall), phase domains, and phase solitons, among others.

PhysicsDegenerate energy levelsPhase (waves)Nonlinear optics01 natural sciencesMolecular physicsOptical bistabilityFour-wave mixingQuantum mechanics0103 physical sciencesFresnel number010306 general physicsBeam (structure)Mixing (physics)
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Analysis of the "Unusual" Vibrational Components of Triply Degenerate Vibrational Mode nu(6) of Mo(CO)(6) Based on the Classical Interpretation of th…

2001

Rotational structure of the triply degenerate vibrational state nu(6)(F(1u)) of the octahedral molecule Mo(CO)(6) is analyzed qualitatively on the basis of classical mechanics. We show that the energy level redistribution between the vibrational components of nu(6)(F(1u)) occurs due to rotational excitation and is related to the formation of singular points of classical rotational energy surfaces. The singularity is stable under small variations of parameters of the effective rovibrational Hamiltonian. Parameters responsible for the persistence of this phenomenon are specified. Comparison with quantum calculations demonstrates the high qualitative and quantitative accuracy of our classical …

PhysicsDegenerate energy levelsRotational–vibrational spectroscopyMolecular physicsAtomic and Molecular Physics and OpticsRotational energyVibrationsymbols.namesakeSingularityQuantum mechanicssymbolsPhysical and Theoretical ChemistryHamiltonian (quantum mechanics)QuantumSpectroscopyExcitationJournal of molecular spectroscopy
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Generalized complex Swift-Hohenberg equation for optical parametric oscillators

1997

A generalized complex Swift-Hohenberg equation including diffraction and nonlinear resonance terms is derived for spatially extended nondegenerate optical parametric oscillators (OPOs) with flat end mirrors. For vanishing pump detuning this equation becomes the complex Swift-Hohenberg (SH) equation valid also for lasers. Nevertheless the similarities between OPOs and lasers are limited, since the diffractive character of OPOs is lost when the diffraction coefficients of signal and idler fields are equal. This manifests, e.g., in the absence of advection by traveling waves (TWs), a clear difference with lasers. When pump detuning is nonzero a nonlinear resonance develops, as it occurs in deg…

PhysicsDiffractionOPOSBistabilityDegenerate energy levelsPhysics::OpticsLaserAtomic and Molecular Physics and Opticslaw.inventionSwift–Hohenberg equationlawQuantum mechanicsNonlinear resonanceParametric statisticsPhysical Review A
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