Search results for "physics.atom-ph"

showing 10 items of 395 documents

Circular dichroism in atomic vapors: magnetically induced transitions responsible for two distinct behaviors

2021

Atomic transitions of alkali metals for which the condition $F_e-F_g = \pm2$ is satisfied have null probability in a zero magnetic field, while a giant increase can occur when an external field is applied. Such transitions, often referred to as magnetically-induced (MI) transitions, have received interest because their high probabilities in wide ranges of external magnetic fields which, in some cases, are even higher than that of usual atomic transitions. Previously, the following rule was established: the intensities of MI transitions with $\Delta F=\pm2$ are maximum when using respectively $\sigma^\pm$ radiation. Within the same ground state, the difference in intensity for $\sigma^+$ and…

PhysicsCircular dichroismMagnetic circular dichroismAtomic Physics (physics.atom-ph)General Physics and AstronomyFOS: Physical sciencesNanocellRadiationAlkali metalPhysics - Atomic PhysicsMagnetic fieldAtomic physicsGround stateLine (formation)
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A Three Dimensional Lattice of Ion Traps

2009

We propose an ion trap configuration such that individual traps can be stacked together in a three dimensional simple cubic arrangement. The isolated trap as well as the extended array of ion traps are characterized for different locations in the lattice, illustrating the robustness of the lattice of traps concept. Ease in the addressing of ions at each lattice site, individually or simultaneously, makes this system naturally suitable for a number of experiments. Application of this trap to precision spectroscopy, quantum information processing and the study of few particle interacting system are discussed.

PhysicsCondensed Matter::Quantum GasesAtomic Physics (physics.atom-ph)Degenerate energy levelsFOS: Physical sciencesCubic crystal systemIon trappingAtomic and Molecular Physics and OpticsIonPhysics - Atomic PhysicsPhysics - General PhysicsGeneral Physics (physics.gen-ph)Lattice (order)Ion trapPhysics::Atomic PhysicsQuantum informationAtomic physicsSpectroscopy
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Dual Hg-Rb magneto-optical trap

2017

We present a two-species laser cooling apparatus capable of simultaneously collecting Rb and Hg atomic gases into a magneto-optical trap (MOT). The atomic sources, laser system, and vacuum set-up are described. While there is a loss of Rb atoms in the MOT due to photoionization by the Hg cooling laser, we show that it does not prevent simultaneous trapping of Rb and Hg. We also demonstrate interspecies collision-induced losses in the ${}^{87}$Rb-${}^{202}$Hg system.

PhysicsCondensed Matter::Quantum GasesAtomic Physics (physics.atom-ph)FOS: Physical sciencesPhotoionizationTrappingLaser01 natural sciencesAtomic and Molecular Physics and Optics010305 fluids & plasmaslaw.inventionPhysics - Atomic PhysicsTrap (computing)lawLaser coolingMagneto-optical trap0103 physical sciencesPhysics::Atomic PhysicsAtomic physics010306 general physics
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Bose-Einstein Condensation in an electro-pneumatically transformed quadrupole-Ioffe magnetic trap

2014

We report a novel approach for preparing a Bose-Einstein condensate (BEC) of $^{87}$Rb atoms using electro-pneumatically driven transfer of atoms into a Quadrupole-Ioffe magnetic trap (QUIC Trap). More than 5$\times$$10^{8}$ atoms from a Magneto-optical trap are loaded into a spherical quadrupole trap and then these atoms are transferred into an Ioffe trap by moving the Ioffe coil towards the center of the quadrupole coil, thereby, changing the distance between quadrupole trap center and the Ioffe coil. The transfer efficiency is more than 80 \%. This approach is different from a conventional approach of loading the atoms into a QUIC trap wherein the spherical quadrupole trap is transformed…

PhysicsCondensed Matter::Quantum GasesQuantum PhysicsAtomic Physics (physics.atom-ph)Condensed Matter::OtherCondensationGeneral Physics and AstronomyFOS: Physical scienceslaw.inventionPhysics - Atomic PhysicsTrap (computing)lawElectromagnetic coilPhase spaceMagnetic trapQuadrupolePhysics::Atomic PhysicsAtomic physicsQuantum Physics (quant-ph)Bose–Einstein condensateEvaporative cooler
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Controlled long-range interactions between Rydberg atoms and ions

2016

We theoretically investigate trapped ions interacting with atoms that are coupled to Rydberg states. The strong polarizabilities of the Rydberg levels increases the interaction strength between atoms and ions by many orders of magnitude, as compared to the case of ground state atoms, and may be mediated over micrometers. We calculate that such interactions can be used to generate entanglement between an atom and the motion or internal state of an ion. Furthermore, the ion could be used as a bus for mediating spin-spin interactions between atomic spins in analogy to much employed techniques in ion trap quantum simulation. The proposed scheme comes with attractive features as it maps the bene…

PhysicsCondensed Matter::Quantum GasesQuantum PhysicsAtomic Physics (physics.atom-ph)Quantum simulatorFOS: Physical sciencesQuantum entanglement7. Clean energy01 natural sciences3. Good health010305 fluids & plasmasPhysics - Atomic Physicssymbols.namesake0103 physical sciencesAtomRydberg atomQuantum systemRydberg formulasymbolsPhysics::Atomic PhysicsQuantum informationAtomic physics010306 general physicsQuantum Physics (quant-ph)Trapped ion quantum computerPhysical Review A
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Visibility of Young's interference fringes: Scattered light from small ion crystals

2015

We observe interference in the light scattered from trapped $^{40}$Ca$^+$ ion crystals. By varying the intensity of the excitation laser, we study the influence of elastic and inelastic scattering on the visibility of the fringe pattern and discriminate its effect from that of the ion temperature and wave-packet localization. In this way we determine the complex degree of coherence and the mutual coherence of light fields produced by individual atoms. We obtain interference fringes from crystals consisting of two, three and four ions in a harmonic trap. Control of the trapping potential allows for the adjustment of the interatomic distances and thus the formation of linear arrays of atoms s…

PhysicsCondensed Matter::Quantum GasesQuantum PhysicsMutual coherenceAtomic Physics (physics.atom-ph)General Physics and AstronomyFOS: Physical sciencesDegree of coherenceGratingInelastic scatteringInterference (wave propagation)Laser01 natural sciencesIonlaw.inventionPhysics - Atomic Physics010309 opticslaw0103 physical sciencesPhysics::Atomic PhysicsAtomic physics010306 general physicsQuantum Physics (quant-ph)Excitation
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Preparing single ultra-cold antihydrogen atoms for free-fall in GBAR

2014

We discuss an experimental approach allowing to prepare antihydrogen atoms for the GBAR experiment. We study the feasibility of all necessary experimental steps: The capture of incoming $\bar{\rm H}^{+}$ ions at keV energies in a deep linear RF trap, sympathetic cooling by laser cooled Be+ ions, transfer to a miniaturized trap and Raman sideband cooling of an ion pair to the motional ground state, and further reducing the momentum of the wavepacket by adiabatic opening of the trap. For each step, we point out the experimental challenges and discuss the efficiency and characteristic times, showing that capture and cooling are possible within a few seconds. We discuss an experimental approach…

PhysicsCondensed Matter::Quantum GasesSympathetic coolingOther Fields of Physics7. Clean energyphysics.atom-phIonMomentumquant-ph13. Climate actionAntimatterPhysics::Atomic PhysicsAtomic physicsAdiabatic processGround stateAntihydrogenGeneral Theoretical PhysicsBar (unit)
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Penning traps as a versatile tool for precise experiments in fundamental physics

2009

This review article describes the trapping of charged particles. The main principles of electromagnetic confinement of various species from elementary particles to heavy atoms are briefly described. The preparation and manipulation with trapped single particles, as well as methods of frequency measurements, providing unprecedented precision, are discussed. Unique applications of Penning traps in fundamental physics are presented. Ultra-precise trap-measurements of masses and magnetic moments of elementary particles (electrons, positrons, protons and antiprotons) confirm CPT-conservation, and allow accurate determination of the fine-structure constant alpha and other fundamental constants. T…

PhysicsCondensed Matter::Quantum GasesUnitarityAtomic Physics (physics.atom-ph)General Physics and AstronomyFOS: Physical sciencesElementary particleElectronCharged particleAtomic massPhysics - Atomic PhysicsStandard ModelNuclear physicsAntiprotonNuclidePhysics::Atomic PhysicsAtomic physics
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Ionization of atoms by slow heavy particles, including dark matter

2016

Atoms and molecules can become ionized during the scattering of a slow, heavy particle off a bound electron. Such an interaction involving leptophilic weakly interacting massive particles (WIMPs) is a promising possible explanation for the anomalous 9 sigma annual modulation in the DAMA dark matter direct detection experiment [R. Bernabei et al., Eur. Phys. J. C 73, 2648 (2013)]. We demonstrate the applicability of the Born approximation for such an interaction by showing its equivalence to the semiclassical adiabatic treatment of atomic ionization by slow-moving WIMPs. Conventional wisdom has it that the ionization probability for such a process should be exponentially small. We show, howe…

PhysicsCosmology and Nongalactic Astrophysics (astro-ph.CO)Atomic Physics (physics.atom-ph)010308 nuclear & particles physicsScatteringDark matterAtoms in moleculesFOS: Physical sciencesGeneral Physics and AstronomyElectron01 natural sciencesAstrophysics - Astrophysics of GalaxiesPhysics - Atomic PhysicsHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Astrophysics of Galaxies (astro-ph.GA)IonizationWeakly interacting massive particles0103 physical sciencesBorn approximationAtomic physics010306 general physicsRelativistic quantum chemistryAstrophysics - Cosmology and Nongalactic Astrophysics
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Dark matter scattering on electrons: Accurate calculations of atomic excitations and implications for the DAMA signal

2016

We revisit the WIMP-type dark matter scattering on electrons that results in atomic ionization and can manifest itself in a variety of existing direct-detection experiments. Unlike the WIMP-nucleon scattering, where current experiments probe typical interaction strengths much smaller than the Fermi constant, the scattering on electrons requires a much stronger interaction to be detectable, which in turn requires new light force carriers. We account for such new forces explicitly, by introducing a mediator particle with scalar or vector couplings to dark matter and to electrons. We then perform state-of-the-art numerical calculations of atomic ionization relevant to the existing experiments.…

PhysicsCosmology and Nongalactic Astrophysics (astro-ph.CO)Atomic Physics (physics.atom-ph)010308 nuclear & particles physicsScatteringPhysics beyond the Standard ModelDark matterScalar (mathematics)FOS: Physical sciencesElectron01 natural sciencesHigh Energy Physics - ExperimentPhysics - Atomic PhysicsComputational physicsHigh Energy Physics - Experiment (hep-ex)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Ionization0103 physical sciencesAtomic physics010306 general physicsRelativistic quantum chemistryAstrophysics - Cosmology and Nongalactic AstrophysicsFermi Gamma-ray Space TelescopePhysical Review D
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