Search results for "HYPERFINE"

showing 10 items of 428 documents

Ground-state magneto-optical resonances in cesium vapor confined in an extremely thin cell

2007

Experimental and theoretical studies are presented related to the ground-state magneto-optical resonance prepared in Cesium vapour confined in an Extremely Thin Cell (ETC, with thickness equal to the wavelength of the irradiating light). It is shown that the utilization of the ETC allows one to examine the formation of a magneto-optical resonance on the individual hyperfine transitions, thus distinguishing processes resulting in dark (reduced absorption) or bright (enhanced absorption) resonance formation. We report on an experimental evidence of the bright magneto-optical resonance sign reversal in Cs atoms confined in the ETC. A theoretical model is proposed based on the optical Bloch equ…

PhysicsAtomic Physics (physics.atom-ph)FOS: Physical sciencesResonanceAtomic and Molecular Physics and OpticsPhysics - Atomic PhysicsWavelengthBloch equationsExcited statePhysics::Atomic PhysicsLaser power scalingAtomic physicsGround stateAbsorption (electromagnetic radiation)Hyperfine structurePhysical Review A
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Relaxation mechanisms affecting magneto-optical resonances in an extremely thin cell: Experiment and theory for the cesiumD1line

2015

We have measured magneto-optical signals obtained by exciting the $D_1$ line of cesium atoms confined to an extremely thin cell (ETC), whose walls are separated by less than one micrometer, and developed an improved theoretical model to describe these signals with experimental precision. The theoretical model was based on the optical Bloch equations and included all neighboring hyperfine transitions, the mixing of the magnetic sublevels in an external magnetic field, and the Doppler effect, as in previous studies. However, in order to model the extreme conditions in the ETC more realistically, the model was extended to include a unified treatment of transit relaxation and wall collisions wi…

PhysicsAtomic Physics (physics.atom-ph)FOS: Physical scienceschemistry.chemical_elementLaserAtomic and Molecular Physics and OpticsPhysics - Atomic PhysicsD-1Magnetic fieldlaw.inventionsymbols.namesakechemistrylawCaesiumThermalsymbolsPhysics::Atomic PhysicsAtomic physicsDoppler effectSaturation (magnetic)Hyperfine structurePhysical Review A
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Nobelium energy levels and hyperfine structure constants

2018

Advances in laser spectroscopy of superheavy ($Z>100$) elements enabled determination of the nuclear moments of the heaviest nuclei, which requires high-precision atomic calculations of the relevant hyperfine structure (HFS) constants. Here, we calculated the HFS constants and energy levels for a number of nobelium (Z=102) states using the hybrid approach, combining linearized coupled-cluster and configuration interaction methods. We also carried out an extensive study of the No energies using 16-electron configuration interaction method to determine the position of the (5f^{13}7s^2 6d) and (5f^{13}7s^2 7p) levels with a hole in the 5f shell to evaluate their potential effect on the hype…

PhysicsAtomic Physics (physics.atom-ph)Potential effectchemistry.chemical_elementFOS: Physical sciencesConfiguration interactionHybrid approach01 natural sciencesPhysics - Atomic Physics010305 fluids & plasmaschemistry0103 physical sciencesNobeliumAtomic physics010306 general physicsSpectroscopyHyperfine structureEnergy (signal processing)
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Alignment-to-orientation conversion in a magnetic field at nonlinear excitation of theD2line of rubidium: Experiment and theory

2015

We studied alignment-to-orientation conversion caused by excited-state level crossings in a nonzero magnetic field of both atomic rubidium isotopes. Experimental measurements were performed on the transitions of the $D_2$ line of rubidium. These measured signals were described by a theoretical model that takes into account all neighboring hyperfine transitions, the mixing of magnetic sublevels in an external magnetic field, the coherence properties of the exciting laser radiation, and the Doppler effect. In the experiments laser induced fluorescence (LIF) components were observed at linearly polarized excitation and their difference was taken afterwards. By observing the two oppositely circ…

PhysicsAtomic Physics (physics.atom-ph)business.industryLinear polarizationFOS: Physical scienceschemistry.chemical_elementLaserAtomic and Molecular Physics and OpticsIsotopes of rubidiumPhysics - Atomic Physicslaw.inventionRubidiumMagnetic fieldOpticschemistrylawPhysics::Atomic PhysicsAtomic physicsbusinessHyperfine structureExcitationCoherence (physics)Physical Review A
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Hyperfine interaction in the Autler-Townes effect: The formation of bright, dark, and chameleon states

2017

This paper is devoted to clarifying the implications of hyperfine (HF) interaction in the formation of adiabatic (i.e., ``laser-dressed'') states and their expression in the Autler-Townes (AT) spectra. We first use the Morris-Shore model [J. R. Morris and B. W. Shore, Phys. Rev. A 27, 906 (1983)] to illustrate how bright and dark states are formed in a simple reference system where closely spaced energy levels are coupled to a single state with a strong laser field with the respective Rabi frequency ${\mathrm{\ensuremath{\Omega}}}_{S}$. We then expand the simulations to realistic hyperfine level systems in Na atoms for a more general case when non-negligible HF interaction can be treated as…

PhysicsAutler–Townes effectCoupling (probability)01 natural sciencesOmegaSpectral line010305 fluids & plasmas0103 physical sciencesAtomic physics010306 general physicsGround stateHyperfine structureEnergy (signal processing)ExcitationPhysical Review A
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Characterization ofE′δand triplet point defects in oxygen-deficient amorphous silicon dioxide

2006

We report an experimental study by electron paramagnetic resonance (EPR) of $\ensuremath{\gamma}$-ray irradiation induced point defects in oxygen deficient amorphous $\mathrm{Si}{\mathrm{O}}_{2}$ materials. We have found that three intrinsic ($\mathrm{E}^{\ensuremath{'}}{}_{\ensuremath{\gamma}}$, $\mathrm{E}^{\ensuremath{'}}{}_{\ensuremath{\delta}}$, and triplet) and one extrinsic $({[\mathrm{Al}{\mathrm{O}}_{4}]}^{0})$ paramagnetic centers are induced. All the paramagnetic defects but $\mathrm{E}^{\ensuremath{'}}{}_{\ensuremath{\gamma}}$ center are found to reach a concentration limit value for doses above ${10}^{3}\phantom{\rule{0.3em}{0ex}}\mathrm{kGy}$, suggesting a generation process f…

PhysicsCenter (category theory)Charge (physics)Condensed Matter PhysicsElectronic Optical and Magnetic Materialslaw.inventionParamagnetismUnpaired electronlawSaturation (graph theory)Atomic physicsWave functionElectron paramagnetic resonanceHyperfine structurePhysical Review B
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Chiral perturbation theory of hyperfine splitting in muonic hydrogen

2016

We present the leading-order prediction of baryon chiral perturbation theory for the proton polarizability contribution to the 2S hyperfine splitting in muonic hydrogen, and compare with the results of dispersive calculations.

PhysicsChiral perturbation theoryHydrogenProtonHigh Energy Physics::PhenomenologyNuclear Theorychemistry.chemical_elementBaryonchemistryPolarizabilityPhysics::Atomic and Molecular ClustersPhysics::Atomic PhysicsAtomic physicsNuclear ExperimentHyperfine structureExotic atomProceedings of The 8th International Workshop on Chiral Dynamics — PoS(CD15)
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Hyperfine structure in 5s 4d 3 D ?5snf transitions of87Sr

1993

The hyperfine spectra of the 5s4d3D1-5s20f, 5s4d3D2-5s23f, and 5s 4d3D3-5s32f transitions of87Sr (I=9/2) have been measured by collinear fast beam laser spectroscopy. The structure in the upper configurations is highly perturbed by fine structure splitting that is of comparable size to the hyperfine interaction energy. These perturbations can be adequately treated with conventional matrix diagonalization methods, using the 5s-electron magnetic dipole interaction terma5s and the unperturbed fine structure splittings as input parameters. Additionally, hyperfine constants for the lower 5s4d3D configurations, including theA- andB-factors and a separation of the individuals- andd-electron contri…

PhysicsComparable sizeDiagonalizable matrixBeam laserFine structurePhysics::Atomic PhysicsSpectroscopyMolecular physicsHyperfine structureMagnetic dipoleAtomic and Molecular Physics and OpticsSpectral lineZeitschrift f�r Physik D Atoms, Molecules and Clusters
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Large orbital moments and internal magnetic fields in lithium nitridoferrate(I)

2002

The iron nitridometalates Li2[(Li(1-x)Fe(I)(x))N] display ferromagnetic ordering and spin freezing. Large magnetic moments up to 5.0mu(B)/Fe are found in the magnetization. In Mössbauer effect studies huge hyperfine magnetic fields up to 696 kOe are observed at specific Fe sites. These extraordinary fields and moments originate in an unusual ligand field splitting for those Fe species leading [within local spin density approximation (LSDA)] to a localized orbitally degenerate doublet. Including spin-orbit interaction and strong intra-atomic electron correlation (LDA+SO+U) gives rise to a large orbital momentum.

PhysicsCondensed Matter::Materials ScienceMagnetizationCondensed matter physicsMagnetic momentFerromagnetismSpin polarizationGeneral Physics and AstronomyCondensed Matter::Strongly Correlated ElectronsSpin (physics)Hyperfine structureElectron magnetic dipole momentSpin magnetic moment
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Coherent collisional spin dynamics in optical lattices

2005

We report on the observation of coherent, purely collisionally driven spin dynamics of neutral atoms in an optical lattice. For high lattice depths, atom pairs confined to the same lattice site show weakly damped Rabi-type oscillations between two-particle Zeeman states of equal magnetization, induced by spin changing collisions. This paves the way towards the efficient creation of robust entangled atom pairs in an optical lattice. Moreover, measurement of the oscillation frequency allows for precise determination of the spin-changing collisional coupling strengths, which are directly related to fundamental scattering lengths describing interatomic collisions at ultracold temperatures.

PhysicsCondensed Matter::Quantum GasesOptical latticeZeeman effectScatteringOscillationFOS: Physical sciencesGeneral Physics and Astronomy01 natural sciences010305 fluids & plasmasCondensed Matter - Other Condensed MatterMagnetizationsymbols.namesakeLattice (order)[PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]0103 physical sciencesAtomsymbolsPhysics::Atomic PhysicsAtomic physics010306 general physicsHyperfine structureOther Condensed Matter (cond-mat.other)
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