Search results for " light"

showing 10 items of 1141 documents

Nonclassical correlations in superconducting circuits

2009

A key step on the road map to solid-state quantum information processing (and to a deeper understanding of many counterintuitive aspects of quantum mechanics) is the generation and manipulation of nonclassical correlations between different quantum systems. Within this framework, we analyze the possibility of generating maximally entangled states in a system of two superconducting flux qubits, as well as the effect of their own environments on the entanglement dynamics. The analysis reported here confirms that the phenomena of sudden birth and sudden death of the entanglement do not depend on the particular measure of the entanglement adopted.

PhysicsQuantum discordQuantum mechanicsQuantum PhysicsQuantum entanglementNonclassical lightW stateQuantum informationCondensed Matter PhysicsSquashed entanglementMultipartite entanglementSudden deathElectronic Optical and Magnetic Materialsphysica status solidi (b)
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Nonunitary generation of nonclassical states of a bidimensional harmonic oscillator

2000

A scheme for generating quantum superpositions of macroscopically distinguishable states of the vibrational motion of a bidimensionally trapped ion is reported. We show that these states possess highly nonclassical properties controllable by an adjustable parameter simply related to the initial condition of the confined system

PhysicsQuantum mechanicsInitial value problemMotion (geometry)Nonclassical lightTrappingQuantumAtomic and Molecular Physics and OpticsHarmonic oscillatorIonPhysical Review A
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Erratum: Atom-field dressed states in slow-light waveguide QED [Phys. Rev. A93, 033833 (2016)]

2016

We discuss the properties of atom-photon bound states in waveguide QED systems consisting of single or multiple atoms coupled strongly to a finite-bandwidth photonic channel. Such bound states are formed by an atom and a localized photonic excitation and represent the continuum analog of the familiar dressed states in single-mode cavity QED. Here we present a detailed analysis of the linear and nonlinear spectral features associated with single- and multiphoton dressed states and show how the formation of bound states affects the waveguide-mediated dipole-dipole interactions between separated atoms. Our results provide both a qualitative and quantitative description of the essential strong-…

PhysicsQuantum opticsatom-photon bound states.Field (physics)quantum opticQuantum mechanicsQuantum electrodynamicsAtomWaveguide QEDWaveguide (acoustics)Slow lightWaveguide QED; quantum optics; atom-photon bound states.Physical Review A
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Light propagation in triple-film hetero-opals

2005

Spectra of transmitted and forward scattered light of single opal films and triple-film hetero-opals have been compared. The presence of an intermediate film in hetero-opal results in an anomalous increase of the scattered light intensity and in the change of the mainly ballistic light propagation regime to the mainly diffusive one in the frequency range of the photonic bandgap defect state.

PhysicsRange (particle radiation)OPALSbusiness.industryCondensed Matter PhysicsSpectral lineIntensity (physics)Condensed Matter::Materials ScienceOpticsLight propagationOptoelectronicsHigh Energy Physics::ExperimentGeneral Materials SciencePhysical and Theoretical ChemistryScattered lightbusinessBallistic photonPhotonic bandgapProgress in Solid State Chemistry
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Surface relief grating formation in amorphous As40S15Se45 and As2S3 films under 0.532 μm wavelength illumination

2014

In this research we have studied the influence of λ = 0.532 μm laser light illumination on the formation and properties of surface relief gratings in amorphous As2S3 and As40Se15Se45 films, as well as a bulk As2S3 sample. The surface relief grating formation was studied for a wide range of grating periods (∼1 – ∼80 μm) for the variable thicknesses of the samples. The examination of the relief depth, Δh, and its dependence on the grating period at constant exposures shows that the impact of sample thickness could manifest itself as a shift in the optimal grating period at holographic surface relief formation (As2S3) and affect the process itself.

PhysicsRange (particle radiation)Surface reliefbusiness.industryHolographyGeneral Physics and AstronomyGratingAmorphous solidlaw.inventionWavelengthOpticslawbusinessSurface relief gratingLaser lightCanadian Journal of Physics
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Four-time rotational correlation functions

1998

A scheme to analyze four-time rotational correlation functions of any rank is developed and details for rank L = 1 and 2 are given. The scheme provides a transparent way for identifying deviations from simple Markovian dynamics as observed, e.g., in complex liquids close to the glass transition. The method should be applicable to NMR and optical multiple-pulse techniques as well as to photon correlation spectroscopy. Results are given for 2H-NMR multiple-pulse data in supercooled glycerol. We identify and analyze the dynamical heterogeneity of molecular reorientation in a range of 205 − 215 K close to the glass temperature Tg = 190 K.

PhysicsRank (linear algebra)business.industryRelaxation (NMR)General Physics and AstronomyCondensed Matter::Soft Condensed MatterRange (mathematics)OpticsDynamic light scatteringSimple (abstract algebra)Statistical physicsDynamical heterogeneitySupercoolingbusinessGlass transitionEurophysics Letters (EPL)
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Coherent light scattering on nanofluids: computer simulation results.

2008

If coherent light is incident on a suspension containing nanoparticles, they act as scattering centers and the result of the far-field interference is a "speckled" image. The scattering centers have a complex movement of both sedimentation and Brownian motion. Consequently the speckle image is not static but presents time fluctuations. A computer code to simulate the dynamics of the coherent light scattering on nanofluids was written, tested, and used to calculate the far-field intensity variation for nanofluids having different particle size. The results are discussed and an alternative experimental method for fast nanoparticle size assessing is suggested as a possible application.

PhysicsScatteringbusiness.industryMaterials Science (miscellaneous)Industrial and Manufacturing EngineeringLight scatteringSpeckle patternsymbols.namesakeLight intensityNanofluidOpticsDynamic light scatteringsymbolsSpeckle imagingBusiness and International ManagementRayleigh scatteringbusinessApplied optics
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Ageing studies of TPB in noble gas detectors for dark matter and neutrinoless ββ decay searches

2017

Noble gases (Xe, Ar, Kr) are very attractive as detector media in Dark Matter search and neutrinoless double-beta decay experiments. However, the detection of their scintillation light (in the VUV spectral region) requires shifting the VUV light to visible light, where standard photosensors are more efficient. Tetraphenyl butadiene (TPB) is widely used as wavelength shifter, absorbing the VUV light and re-emitting in the blue region (~430nm). TPB is an organic molecule that may degrade due to exposure to environmental agents and also to ultraviolet light. In this work, we present TPB ageing studies due to exposure to VUV light, aiming at quantifying the reduction of the absolute fluorescenc…

PhysicsScintillation010308 nuclear & particles physicsPhotodetectorNoble gasTetraphenyl butadieneWavelength shifter01 natural sciences7. Clean energyAtomic and Molecular Physics and OpticsAnalytical Chemistrylaw.inventionchemistry.chemical_compoundchemistry13. Climate actionlaw0103 physical sciencesUltraviolet lightAtomic physics010306 general physicsInstrumentationSpectroscopyVisible spectrumMonochromator
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Stopping a slow-light soliton: an exact solution

2005

We investigate propagation of a slow-light soliton in Λ-type media such as atomic vapours and Bose–Einstein condensates. We show that the group velocity of the soliton monotonically decreases with the intensity of the controlling laser field, which decays exponentially after the laser is switched off. The shock wave of the vanishing controlling field overtakes the slow soliton and stops it, while the optical information is recorded in the medium in the form of spatially localized polarization. In the strongly nonlinear regime we find an explicit exact solution describing the whole process.

PhysicsShock waveGeneral Physics and AstronomyStatistical and Nonlinear PhysicsPolarization (waves)Slow lightlaw.inventionDissipative solitonExact solutions in general relativitylawQuantum mechanicsQuantum electrodynamicsGroup velocitySolitonMathematical PhysicsBose–Einstein condensateJournal of Physics A: Mathematical and General
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Nonlinear theory of slow light.

2011

In the framework of the nonlinear Λ model, propagation of solitons was analysed in atomic vapours and Bose–Einstein condensates. The complicated nonlinear interplay between fast and slow-light solitons in a Λ -type medium was shown to facilitate control of its optical transparency and formation of optical gates. An exact analytical description was given for the deceleration, stopping and revival of slow-light solitons in the experimentally relevant non-adiabatic regime. A stopping slow-light soliton imprints a localized immobile polarization pattern in the medium, which, as explicitly demonstrated here, can be used as a bit of readable optical memory. The whole process can be controlled wi…

PhysicsSignal velocityGeneral MathematicsRelaxation (NMR)General EngineeringGeneral Physics and AstronomyObservableLaserSlow lightPolarization (waves)law.inventionNonlinear systemlawQuantum mechanicsSolitonPhilosophical transactions. Series A, Mathematical, physical, and engineering sciences
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