Search results for "rotation"

showing 10 items of 935 documents

Numerical Simulations of the Thermal Instability Collapse in Radiation Pressure Dominated Disks

2005

We show that accretion disks, both in the subcritical and supercritical accretion rate regime, may exhibit significant amplitude luminosity oscillations. The luminosity time behavior has been obtained by performing a set of time‐dependent 2D SPH simulations of accretion disks with different values of α and accretion rate. An explanation of this luminosity behavior is proposed in terms of limit‐cycle instability: the disk oscillates between a radiation pressure dominated configuration (with a high luminosity value) and a gas pressure dominated one (with a low luminosity value). The origin of this instability is the difference between the heat produced by viscosity and the energy emitted as r…

PhysicsAstrophysics::High Energy Astrophysical PhenomenaQuasarAstrophysics::Cosmology and Extragalactic AstrophysicsAstrophysicsRadiationInstabilityLuminosityViscosityAmplitudeRadiation pressureMagnetorotational instabilityAstrophysics::Solar and Stellar AstrophysicsAstrophysics::Earth and Planetary AstrophysicsAstrophysics::Galaxy Astrophysics
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Nonlinear magneto-optical rotation in rubidium vapor excited with blue light

2015

We present experimental and numerical studies of nonlinear magneto-optical rotation (NMOR) in rubidium vapor excited with resonant light tuned to the $5^2\!S_{1/2}\rightarrow 6^2\!P_{1/2}$ absorption line (421~nm). Contrary to the experiments performed to date on the strong $D_1$ or $D_2$ lines, in this case, the spontaneous decay of the excited state $6^2\!P_{1/2}$ may occur via multiple intermediate states, affecting the dynamics, magnitude and other characteristics of NMOR. Comparing the experimental results with the results of modelling based on Auzinsh et al., Phys. Rev. A 80, 1 (2009), we demonstrate that despite the complexity of the structure, NMOR can be adequately described with a…

PhysicsAtomic Physics (physics.atom-ph)FOS: Physical sciencesNonlinear opticschemistry.chemical_elementRotationAtomic and Molecular Physics and OpticsSpectral linePhysics - Atomic PhysicsMagneto opticalRubidiumNonlinear systemchemistryExcited statePhysics::Atomic PhysicsAtomic physicsOptics (physics.optics)Physics - OpticsBlue lightPhysical Review A
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Light-induced polarization effects in atoms with partially resolved hyperfine structure and applications to absorption, fluorescence, and nonlinear m…

2009

The creation and detection of atomic polarization is examined theoretically, through the study of basic optical-pumping mechanisms and absorption and fluorescence measurements, and the dependence of these processes on the size of ground- and excited-state hyperfine splittings is determined. The consequences of this dependence are studied in more detail for the case of nonlinear magneto-optical rotation in the Faraday geometry (an effect requiring the creation and detection of rank-two polarization in the ground state) with alkali atoms. Analytic formulas for the optical rotation signal under various experimental conditions are presented.

PhysicsAtomic Physics (physics.atom-ph)FOS: Physical sciencesPolarization (waves)FluorescenceAtomic and Molecular Physics and Opticslaw.inventionPhysics - Atomic PhysicsNonlinear systemlawLight inducedPhysics::Atomic PhysicsOptical rotationAtomic physicsFaraday cageGround stateHyperfine structure
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Polarization properties of a fiber optic loop mirror

2021

Abstract In this work, we present the spectral polarization properties of a fiber optic loop mirror (FOLM) which includes a 50/50 coupler and 25-cm long highly birefringent (hi-bi) fiber. The modulation depth of the reflection/transmission spectra can be adjusted by twisting the hi-bi fiber at the splices by means of two azimuth rotators (AR). The results show that the polarization properties of the reflection strongly depends on the angle rotation. We found that it is possible to obtain reflection spectral polarization independence for any modulation depth with the proper parameters. The experimental behavior was confirmed by numerical simulations based on the Jones matrix formulation.

PhysicsBirefringencebusiness.industryPhysics::Optics02 engineering and technologyPolarization (waves)Rotation01 natural sciencesAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materials010309 opticsAzimuthAmplitude modulation020210 optoelectronics & photonicsOpticsReflection (mathematics)Transmission (telecommunications)0103 physical sciences0202 electrical engineering electronic engineering information engineeringFiberElectrical and Electronic EngineeringbusinessOptics & Laser Technology
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Development of the Dipole Moment and Polarizability Operators of Octahedral Molecules

1999

We present a development of the dipole moment and polarizability operators of octahedral molecules, using a tensorial formalism analogous to the one developed for tetrahedral molecules. These operators are involved in the calculation of the intensities of rovibrational transitions as well as in the calculation of the Stark effect. Expressions for the matrix elements are derived. Two simplified models for the study of the Stark effect in such molecules are also proposed and discussed. Copyright 1999 Academic Press.

PhysicsBond dipole momentTransition dipole momentTetrahedral molecular geometryRotational–vibrational spectroscopyMolecular physicsAtomic and Molecular Physics and Opticssymbols.namesakeDipoleStark effectPolarizabilityQuantum mechanicsPhysics::Atomic and Molecular ClusterssymbolsMoleculePhysics::Atomic PhysicsPhysics::Chemical PhysicsPhysical and Theoretical ChemistrySpectroscopyJournal of Molecular Spectroscopy
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Topological charge selection rule for phase singularities

2009

We present a study of the dynamics and decay pattern of phase singularities due to the action of a system with a discrete rotational symmetry of finite order. A topological charge conservation rule is identified. The role played by the underlying symmetry is emphasized. An effective model describing the short range dynamics of the vortex clusters has been designed. A method to engineer any desired configuration of clusters of phase singularities is proposed. Its flexibility to create and control clusters of vortices is discussed.

PhysicsCharge conservationSingularity theoryRotational symmetryFOS: Physical sciencesFísicaPattern Formation and Solitons (nlin.PS)ÒpticaNonlinear Sciences - Pattern Formation and SolitonsAtomic and Molecular Physics and OpticsAction (physics)Symmetry (physics)VortexClassical mechanicsGravitational singularityTopological quantum numberPhysical Review A
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Surface Plasmon Platform for Angle-Resolved Chiral Sensing

2019

Chiral sensitive techniques have been used to probe the fundamental symmetries of the universe, study biomolecular structures, and even develop safe drugs. As chiral signals are inherently weak and...

PhysicsCircular dichroismHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologySurface plasmon02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesMolecular physicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materials010309 optics0103 physical sciencesElectrical and Electronic EngineeringThin filmSurface plasmon resonanceOptical rotation0210 nano-technologyChirality (chemistry)BiotechnologyACS Photonics
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Spectroscopy of XY2Z2 (C2v) Molecules: A Tensorial Formalism Adapted to the O(3)⊃Td⊃C2v Chain. Application to the Ground State of SO2F2

2002

Abstract A tensorial formalism adapted to the case of quasi-spherical XY 2 Z 2 asymmetric tops such as SO 2 F 2 has been developed as an extension of the usual one for the tetrahedral molecules. We use the O (3)⊃ T d ⊃ C 2 v group chain. All the coupling coefficients and formulas for the computation of matrix elements are given for this chain. Such relations are then deduced in the C 2 v group itself. We also present a development of the Hamiltonian, dipole moment, and polarizability operators for the molecules under consideration using this formalism. These operators are involved in the calculation of the energies and intensities of rovibrational transitions and are essential for spectrum …

PhysicsComputationTetrahedral molecular geometryRotational–vibrational spectroscopyAtomic and Molecular Physics and OpticsDipolesymbols.namesakePolarizabilityQuantum mechanicssymbolsPhysical and Theoretical ChemistryGround stateSpectroscopyHamiltonian (quantum mechanics)SpectroscopyJournal of Molecular Spectroscopy
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Ellipsoidal deformation of vertical quantum dots

1999

Addition energy spectra at 0 T of circular and ellipsoidally deformed few-electron vertical quantum dots are measured and compared to results of model calculations within spin-density functional theory. Because of the rotational symmetry of the lateral harmonic confining potential, circular dots show a pronounced shell structure. With the lifting of the single- particle level degeneracies, even a small deformation is found to radically alter the shell structure leading to significant modifications in the addition energy spectra. Breaking the circular symmetry with deformation also induces changes in the total spin. This "piezo-magnetic" behavior of quantum dots is discussed, and the additio…

PhysicsCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physicsQuantum dotMesoscale and Nanoscale Physics (cond-mat.mes-hall)Rotational symmetryFOS: Physical sciencesCircular symmetryDeformation (meteorology)AnisotropyGround stateSpin-½Magnetic field
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Phenomenological description of counterflow superfluid turbulence in rotating containers

2004

In this paper a simple equation for the vortex line density describing some of the most relevant observed effects in counterflow superfluid turbulence in ${}^{4}\mathrm{He}$ in the presence of rotation is proposed. This model is based on a generalization of Vinen's equation which incorporates as additional quantity the angular velocity \ensuremath{\Omega}.

PhysicsCondensed Matter::OtherGeneralizationTurbulenceAngular velocityCondensed Matter PhysicsRotationOmegaElectronic Optical and Magnetic MaterialsVortexSuperfluidityClassical mechanicsLine (formation)Mathematical physics
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