Search results for "Amplitude"

showing 10 items of 1169 documents

Collective amplitude mode fluctuations in a flat band superconductor formed at a semimetal surface

2016

We study the fluctuations of the amplitude (i.e., the Higgs-Anderson) mode in a superconducting system of coupled Dirac particles proposed as a model for possible surface or interface superconductivity in rhombohedral graphite. This system also serves as a generic model of a topological semimetal with an interaction-driven transition on its surface. We show that the absence of Fermi energy and vanishing of the excitation gap of the collective amplitude mode in the model leads to a large fluctuation contribution to thermodynamic quantities, such as the heat capacity. As a consequence, the mean-field theory becomes inaccurate, indicating that the interactions lead to a strongly correlated sta…

SuperconductivityPhysicsSurface (mathematics)ta114Condensed matter physicsDirac (software)Fermi energyamplitude mode01 natural sciencesHeat capacitysemimetalsSemimetal010305 fluids & plasmasROOM-TEMPERATUREAmplitude0103 physical sciences010306 general physicsphysicsExcitationPhysical Review B
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A molecular dynamics simulation study of the alpha-relaxation in a 1,4-polybutadiene melt as probed by the coherent dynamic structure factor.

2004

The dynamic coherent structure factor Scoh(q,t) for a 1,4-polybutadiene (PBD) melt has been investigated using atomistic molecular dynamics simulations. The relaxation of Scoh(q,t) at q = 1.44 angstroms(-1) and q = 2.72 angstroms(-1), corresponding to the first and second peaks in the static structure factor for PBD, was studied in detail over a wide range of temperature. It was found that time-temperature superposition holds for the alpha-relaxation for both q values over a wide temperature range and that the alpha-relaxation can be well described by a stretched (Kohlrauch-William-Watts) exponential with temperature independent but q dependent amplitude and stretching exponent. The alpha-r…

Superposition principleCrystallographyMolecular dynamicsAmplitudeChemistryDynamic structure factorRelaxation (NMR)ExponentGeneral Physics and AstronomyPhysical and Theoretical ChemistryAtmospheric temperature rangeStructure factorMolecular physicsThe Journal of chemical physics
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Surface Effects on Block Copolymer Melts Above the Order-Disorder Transition: Linear Theory of Equilibrium Properties and the Kinetics of Surface-Ind…

1997

A phenomenological theory is developed for static and dynamic aspects ofsurface- induced ordering of symmetrical block copolymers taking fluctuation corrections into account, but, considering conditions where the bulk block copolymer melt is still disordered, and a lin- earized version of the resulting Ginzburg-Landau type equation suffices. Both the semi-infinite geometry and symmetrical films of thickness 2L are treated, applying the same boundary con- ditions as used previously for a treatment of wetting in polymer blends, assuming short range surface forces and a long Wavelength approximation. For the static order parameter profile in thin film geometry, We derive an oscillatory converg…

Surface (mathematics)AmplitudeMaterials sciencePhysics and Astronomy (miscellaneous)Phase (matter)Linear systemSurface forceGeneral EngineeringBoundary (topology)ThermodynamicsLamellar structureWettingAtomic and Molecular Physics and OpticsJournal de Physique II
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Quantitative atomic force microscopy

2017

A variety of atomic force microscopy (AFM) modes is employed in the field of surface science. The most prominent AFM modes include the amplitude modulation (AM) and the frequency modulation (FM) mode. Over the years, different ways for analyzing data acquired with different AFM modes have been developed, where each analysis is usually based on mode-specific assumptions and approximations. Checking the validity of the seemingly different approximations employed in the various analysis methods can be a tedious task. Moreover, a straightforward comparison of data analyzed with different methods can, therefore, be challenging. Here, we combine the existing evaluation methods which have been sep…

Surface (mathematics)Physicsatomic force microscopyquantitative analysisField (physics)Atomic force microscopyMode (statistics)operation modeHarmonic (mathematics)Nanotechnology02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter Physics53001 natural sciencesSet (abstract data type)Amplitude modulation0103 physical sciencesGeneral Materials ScienceStatistical physics010306 general physics0210 nano-technologyFrequency modulationJournal of Physics: Condensed Matter
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Dispersive interactions between atoms and nonplanar surfaces

2009

We calculate the dispersive force between a ground state atom and a non planar surface. We present explicit results for a corrugated surface, derived from the scattering approach at first order in the corrugation amplitude. A variety of analytical results are derived in different limiting cases, including the van der Waals and Casimir-Polder regimes. We compute numerically the exact first-order dispersive potential for arbitrary separation distances and corrugation wavelengths, for a Rubidium atom on top of a silicon or gold corrugated surface. We discuss in detail the inadequacy of the proximity force approximation, and present a simple but adequate approximation for computing the potentia…

Surface (mathematics)SiliconFOS: Physical sciencesPhysics::Opticschemistry.chemical_element01 natural sciences010305 fluids & plasmassymbols.namesake[PHYS.QPHY]Physics [physics]/Quantum Physics [quant-ph]0103 physical sciencesAtomPhysics::Atomic and Molecular ClustersPhysics::Atomic Physics010306 general physicsPhysicsQuantum PhysicsCasimir-Polder atom surface corrugation scatteringScatteringFirst orderAtomic and Molecular Physics and OpticsWavelengthAmplitudechemistrysymbolsvan der Waals forceAtomic physicsQuantum Physics (quant-ph)Physical Review A
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Remote monitoring of building oscillation modes by means of real-time Mid Infrared Digital Holography

2016

AbstractNon-destructive measurements of deformations are a quite common application of holography but due to the intrinsic limits in the interferometric technique, those are generally confined only to small targets and in controlled environment. Here we present an advanced technique, based on Mid Infrared Digital Holography (MIR DH), which works in outdoor conditions and provides remote and real-time information on the oscillation modes of large engineering structures. Thanks to the long wavelength of the laser radiation, large areas of buildings can be simultaneously mapped with sub-micrometric resolution in terms of their amplitude and frequency oscillation modes providing all the modal p…

Synthetic aperture radarMultidisciplinaryComputer scienceOscillationbuilding oscillation modesAcousticsDigital HolographyHolographyDigital Holography; building oscillation modes02 engineering and technologyRadiation021001 nanoscience & nanotechnologyLaser01 natural sciencesArticleCharacterization (materials science)law.invention010309 opticsInterferometryAmplitudelaw0103 physical sciences0210 nano-technologyDigital holographySimulationScientific Reports
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A new measurement of direct CP violation in the neutral kaon system

1993

A new measurement of the ratio of the CP-violating amplitudes for $K_{L} \to 2\pi^{0}$ and $K_{L} \to \pi^{+}\pi^{-}$ is reported. The measured value for $\Re = |\eta_{00} / \eta_{ +-}|^{2}$ is $0.9878 \pm 0.0026 \pm 0.0030$, where the first error is the statistical uncertainty and the second is the estimate of the systematic uncertainty. This gives a value for the parameter describing direct CP violation: $\Re$ $\epsilon'/\epsilon = (2.0 \pm 0.7) \times 10^{−3}$ .

Systematic errorPhysicsNuclear and High Energy PhysicsParticle physicsValue (computer science)NA48 experimentMolecularElementary particleAtomicNuclear & Particles PhysicsNuclear physicsAmplitudeParticle and Plasma PhysicsEnergy spectrumCP violationNuclearNeutral particleMathematical PhysicsAstronomical and Space SciencesParticle Physics - Experiment
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Radiation tolerant fiber Bragg gratings for high temperature monitoring at MGy dose levels

2014

International audience; We report a method for fabricating fiber Bragg gratings (FBG) resistant to very severe environments mixing high radiation doses (up to 3 MGy) and high temperatures (up to 230 degrees C). Such FBGs have been written in two types of radiation resistant optical fibers (pure-silica and fluorine-doped cores) by exposures to a 800 nm femtosecond IR laser at power exceeding 500 mW and then subjected to a thermal annealing treatment of 15 min at 750 degrees C. Under radiation, our study reveals that the radiation induced Bragg wavelength shift (BWS) at a 3 MGy dose is strongly reduced compared to responses of FBGs written with nonoptimized conditions. The BWS remains lower t…

Temperature monitoringMaterials scienceOptical fiber02 engineering and technologyRadiation01 natural sciencesTemperature measurementlaw.invention010309 optics020210 optoelectronics & photonicsOpticsSilica.Fiber Bragg gratinglaw0103 physical sciences0202 electrical engineering electronic engineering information engineeringIrradiationComputingMilieux_MISCELLANEOUS[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Radiationbusiness.industryFiber optics sensorFiber optics sensors; Fiber Bragg gratings; Radiation; Silica.Atomic and Molecular Physics and OpticsAmplitudeFiber Bragg gratingFemtosecondbusiness
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A self-synchronizing instrument for harmonic sources detection in power systems

2004

The deregulation of energy markets holds out new prospects for contract between customers and utilities, in which the price of energy can depend on voltage quality and load characteristics, as well as on the responsibility for disturbances caused to supply voltage in power systems. In this context, harmonic sources detection is one of the main problems, because of equipment sensibility and the proliferation of loads which absorb non-sinusoidal currents. In this paper the authors present a new instrument based on a time domain method for the detection of harmonic active powers in three-phase systems, which can be usefully applied even in the presence of unbalance or asymmetry. The amplitude …

Total harmonic distortionEngineeringComputer sciencebusiness.industryPhase angleElectrical engineeringSynchronizingContext (language use)AC powerElectric power systemAmplitudeQuality (physics)DistortionHarmonicElectronic engineeringTime domainElectrical and Electronic EngineeringbusinessSettore ING-INF/07 - Misure Elettriche E ElettronicheInstrumentationHarmonic analysis harmonic distortion phase locked loops (PLLs) power measurement power quality power system harmonics power system measurementsVoltage
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Improved Switching Strategy for Selective Harmonic Elimination in DC-AC Signal Generation via Pulse-Width Modulation

2013

Published version of an article in the journal: Abstract and Applied Analysis. Also available from the publisher at: http://dx.doi.org/10.1155/2013/870904 Open Access We present an advanced design methodology for pulse-width-modulated (PWM) DC-AC signal generation. Using design methods based on the Walsh transform, AC sinusoidal signals can be approximated by suitable PWM signals. For different AC amplitudes, the switching instants of the PWM signals can be efficiently computed by using appropriate systems of explicit linear equations. However, the equation systems provided by conventional implementations of this approach are typically only valid for a restricted interval of AC amplitudes a…

Total harmonic distortionOptimization problemArticle Subjectlcsh:MathematicsApplied Mathematics:Enginyeria electrònica [Àrees temàtiques de la UPC]Anàlisi harmònicaInterval (mathematics)lcsh:QA1-939VDP::Mathematics and natural science: 400::Mathematics: 410::Analysis: 411SignalElectric current convertersHarmonic analysisAmplitudeHadamard transformControl theoryConvertidors de corrent elèctricWalsh Funcions deWalsh functionsAnalysisPulse-width modulationLinear equationMathematicsAbstract and Applied Analysis
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