Search results for "physics.atom-ph"

showing 10 items of 395 documents

Collapse and revival of a Dicke-type coherent narrowing in potassium vapor confined in a nanometric-thin cell

2015

A nanometer-thin-cell (in the direction of laser beam propagation) has been elaborated with the thickness of the atomic vapor column varying smoothly in the range of $L = \unit[50-1500]{nm}$. The cell allows one to study the behavior of the resonance absorption over the $D_1$ line of potassium atoms by varying the laser intensity and the cell thickness from $L = \lambda / 2$ to $L = 2 \lambda$ with the step $\lambda/2$ ($\lambda =\unit[770]{nm}$ is the resonant wavelength of the laser). It is shown that despite the huge Doppler broadening ($>\unit[0.9]{GHz}$ at the cell temperature $\unit[170]{^{\circ}C}$), at low laser intensities a narrowing of the resonance absorption spectrum is observe…

PhysicsAbsorption spectroscopyAtomic Physics (physics.atom-ph)FOS: Physical sciencesPhysics::OpticsCondensed Matter PhysicsLaser01 natural sciencesAtomic and Molecular Physics and Opticslaw.inventionPhysics - Atomic Physics010309 opticsOptical pumpingWavelengthFull width at half maximumLaser linewidthlaw0103 physical sciencesPhysics::Atomic PhysicsAtomic physics010306 general physicsLine (formation)Doppler broadening
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Imaging magnetic scalar potentials by laser-induced fluorescence from bright and dark atoms

2014

We present a spectroscopic method for mapping two-dimensional distributions of magnetic field strengths (magnetic scalar potential lines) using charge-coupled device (CCD) recordings of the fluorescence patterns emitted by spin-polarized Cs vapour in a buffer gas exposed to inhomogeneous magnetic fields. The method relies on the position-selective destruction of spin polarization by magnetic resonances induced by multi-component oscillating magnetic fields, such that magnetic potential lines can be directly detected by the CCD camera. We also present a generic algebraic model allowing for the calculation of the fluorescence patterns and find excellent agreement with the experimental observa…

PhysicsAcoustics and UltrasonicsSpin polarizationAtomic Physics (physics.atom-ph)Buffer gasScalar (physics)FOS: Physical sciencesScalar potentialCondensed Matter PhysicsMolecular physicsSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsMagnetic fieldPhysics - Atomic PhysicsMagnetic potentialLaser-induced fluorescenceImage resolution
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Angular momentum spatial distribution symmetry breaking in Rb by an external magnetic field

2000

Excited state angular momentum alignment -- orientation conversion for atoms with hyperfine structure in presence of an external magnetic field is investigated. Transversal orientation in these conditions is reported for the first time. This phenomenon occurs under Paschen Back conditions at intermediate magnetic field strength. Weak radiation from a linearly polarized diode laser is used to excite Rb atoms in a cell. The laser beam is polarized at an angle of pi/4 with respect to the external magnetic field direction. Ground state hyperfine levels of the 5S_1/2 state are resolved using laser-induced fluorescence spectroscopy under conditions for which all excited 5P_3/2 state hyperfine com…

PhysicsAngular momentumAtomic Physics (physics.atom-ph)FOS: Physical sciencesLaserAtomic and Molecular Physics and Opticslaw.inventionMagnetic fieldPhysics - Atomic PhysicslawOrientation (geometry)Excited statePerpendicularSymmetry breakingPhysics::Atomic PhysicsAtomic physicsSpectroscopyOptics (physics.optics)Physics - Optics
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Angular momentum alignment-to-orientation conversion in the ground state of Rb atoms at room temperature

2020

We investigated experimentally and theoretically angular momentum alignment-to-orientation conversion created by the joint interaction of laser radiation and an external magnetic field with atomic rubidium at room temperature. In particular we were interested in alignment-to-orientation conversion in atomic ground state. Experimentally the laser frequency was fixed to the hyperfine transitions of $D_1$ line of rubidium. We used a theoretical model for signal simulations that takes into account all neighboring hyperfine levels, the mixing of magnetic sublevels in an external magnetic field, the coherence properties of the exciting laser radiation, and the Doppler effect. The experiments were…

PhysicsAngular momentumAtomic Physics (physics.atom-ph)Linear polarizationFOS: Physical scienceschemistry.chemical_elementLaserPhysics - Atomic PhysicsMagnetic fieldRubidiumlaw.inventionchemistrylawPhysics::Atomic PhysicsAtomic physicsLaser-induced fluorescenceGround stateHyperfine structurePhysical Review A
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Electric-Field-Induced Symmetry Breaking of Angular Momentum Distribution in Atoms

2006

We report the experimental observation of alignment to orientation conversion in the 7D_3/2 and 9D_3/2 states of Cs in the presence of an external dc electric field, and without the influence of magnetic fields or atomic collisions. Initial alignment of angular momentum states was created by two-step excitation with linearly polarized laser radiation. The appearance of transverse orientation of angular momentum was confirmed by the observation of circularly polarized light. We present experimentally measured signals and compare them with the results of a detailed theoretical model based on the optical Bloch equations.

PhysicsAngular momentumMagnetic momentAtomic Physics (physics.atom-ph)FOS: Physical sciencesGeneral Physics and AstronomyElectron electric dipole momentPhysics - Atomic PhysicsTotal angular momentum quantum numberQuantum electrodynamicsAngular momentum of lightAngular momentum couplingOrbital angular momentum of lightAngular momentum operatorAtomic physicsPhysical Review Letters
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Isotope shift, non-linearity of King plots and the search for new particles

2017

We derive a mean-field relativistic formula for the isotope shift of an electronic energy level for arbitrary angular momentum; we then use it to predict the spectra of superheavy metastable neutron-rich isotopes belonging to the hypothetical island of stability. Our results may be applied to the search for superheavy atoms in astrophysical spectra using the known values of the transition frequencies for the neutron deficient isotopes produced in the laboratory. An example of a relevant astrophysical system may be the spectra of the Przybylski's star where superheavy elements up to Z=99 have been possibly identified. In addition, it has been recently suggested to use the measurements of Kin…

PhysicsAngular momentumNuclear TheoryField (physics)010308 nuclear & particles physicsAtomic Physics (physics.atom-ph)FOS: Physical sciencesScalar boson01 natural sciencesIsland of stabilityPhysics - Atomic PhysicsStandard ModelNuclear physicsNuclear Theory (nucl-th)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Astrophysics - Solar and Stellar AstrophysicsPolarizability0103 physical sciences010306 general physicsRelativistic quantum chemistryNuclear ExperimentSolar and Stellar Astrophysics (astro-ph.SR)Boson
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Anomalies in radiation-collisional kinetics of Rydberg atoms induced by the effects of dynamical chaos and the double Stark resonance

2013

Radiative and collisional constants of excited atoms contain the matrix elements of the dipole transitions and when they are blocked one can expect occurring a number of interesting phenomena in radiation-collisional kinetics. In recent astrophysical studies of IR emission spectra it was revealed a gap in the radiation emitted by Rydberg atoms ($RA$) with values of the principal quantum number of $n\approx10$. Under the presence of external electric fields a rearrangement of $RA$ emission spectra is possible to associate with manifestations of the Stark effect. The threshold for electric field ionization of $RA$ is $E\approx3\cdot10^{4}$ V/cm for states with $n>10$. This means that the emis…

PhysicsAtmospheric ScienceAtomic Physics (physics.atom-ph)FOS: Physical sciencesAerospace EngineeringResonanceAstronomy and AstrophysicsPhysics - Atomic Physicssymbols.namesakeGeophysicsAstrophysics - Solar and Stellar AstrophysicsStark effectSpace and Planetary ScienceExcited statePrincipal quantum numberRydberg atomRydberg formulasymbolsGeneral Earth and Planetary SciencesEmission spectrumAtomic physicsSolar and Stellar Astrophysics (astro-ph.SR)ExcitationAdvances in Space Research
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Atomic structure calculations of superheavy noble element oganesson (Z=118)

2018

We calculate the spectrum and allowed E1 transitions of the superheavy element Og (Z=118). A combination of configuration interaction (CI) and perturbation theory (PT) is used (Dzuba \textit{et at.} Phys. Rev. A, \textbf{95}, 012503 (2017)). The spectrum of lighter analog Rn I is also calculated and compared to experiment with good agreement.

PhysicsAtomic Physics (physics.atom-ph)0103 physical sciencesSpectrum (functional analysis)FOS: Physical sciencesAtomic physicsConfiguration interactionElement (category theory)Perturbation theory010306 general physics010303 astronomy & astrophysics01 natural sciencesPhysics - Atomic PhysicsPhysical Review A
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Prediction of quantum many-body chaos in protactinium atom

2017

Energy level spectrum of protactinium atom (Pa, Z=91) is simulated with a CI calculation. Levels belonging to the separate manifolds of a given total angular momentum and parity $J^\pi$ exhibit distinct properties of many-body quantum chaos. Moreover, an extremely strong enhancement of small perturbations takes place. As an example, effective three-electron interaction is investigated and found to play a significant role in the system. Chaotic properties of the eigenstates allow one to develop a statistical theory and predict probabilities of different processes in chaotic systems.

PhysicsAtomic Physics (physics.atom-ph)010308 nuclear & particles physicsChaoticFOS: Physical sciencesParity (physics)Configuration interaction01 natural sciencesQuantum chaosPhysics - Atomic PhysicsTotal angular momentum quantum numberQuantum mechanics0103 physical sciencesStatistical theory010306 general physicsQuantumEigenvalues and eigenvectors
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Constraints on Exotic Spin-Dependent Interactions Between Matter and Antimatter from Antiprotonic Helium Spectroscopy.

2018

Heretofore undiscovered spin-0 or spin-1 bosons can mediate exotic spin-dependent interactions between standard-model particles. Here we carry out the first search for semileptonic spin-dependent interactions between matter and antimatter. We compare theoretical calculations and spectroscopic measurements of the hyperfine structure of antiprotonic helium to constrain exotic spin- and velocity-dependent interactions between electrons and antiprotons.

PhysicsAtomic Physics (physics.atom-ph)010308 nuclear & particles physicsFOS: Physical sciencesGeneral Physics and AstronomyElectron01 natural sciencesPhysics - Atomic Physics3. Good healthStandard ModelNuclear physicsAntiprotonAntimatter0103 physical sciencesCondensed Matter::Strongly Correlated ElectronsPhysics::Atomic Physics010306 general physicsSpin (physics)Antiprotonic heliumHyperfine structureBosonPhysical review letters
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