Search results for "Applied Physics"

showing 10 items of 1226 documents

Optimal Design of an X-Band, Fully-Coaxial, Easily-Tunable Broadband Power Equalizer for a Microwave Power Module

2020

A microwave power module (MPM), which is a hybrid combination of a solid-state power amplifier (SSPA) as a driver and a traveling-wave tube amplifier (TWT) as the final high power stage, is a high-power device largely used for radar applications. A gain equalizer is often required to flatten the TWT output power gain owing to its big gain fluctuations over the operating frequency range. In this paper, the design of an X-band, fully-coaxial, easily-tunable broadband power equalizer for an MPM is presented. The structure is composed of a coaxial waveguide as the main transmission line and a coaxial cavity loaded with absorbing material as a resonant unit. Sensitivity analyses of the attenuati…

Power gainMaterials scienceComputer Networks and CommunicationsAcousticsX bandlcsh:TK7800-836002 engineering and technologyGain equalizerTraveling-wave tube01 natural sciencesSettore ING-INF/01 - Elettronicalaw.inventionlawTransmission linetraveling wave tubeMicrowave Power Module0103 physical sciencesBroadband0202 electrical engineering electronic engineering information engineeringElectrical and Electronic Engineering010302 applied physicsmicrowave power moduleAmplifierlcsh:Electronics020206 networking & telecommunicationsSettore ING-INF/02 - Campi ElettromagneticiSettore ING-IND/31 - ElettrotecnicaHardware and ArchitectureControl and Systems EngineeringSignal ProcessingtunablebroadbandCoaxialcoaxialradar
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Applied multi-pulsed laser in surface treatment and numerical–experimental analysis

2011

International audience; This paper presents a comparison between simulation and experimental results of the melting process of metallic material by a pulsed laser source Nd–YAG. The simulations of temperature and velocity fields of melted material were done by solving the transient heat transfer and fluid-flow equations. Variations of the thermophysical properties were considered. Furthermore, the model included the effects of the surface-tension gradient on the fluid surface and the buoyancy force. The simulation was useful in improving our understanding of the phenomena occurring in the treated material. Using a laser triangulation sensor, an experimental study was also conducted on the s…

Pulsed laserSurface (mathematics)Materials scienceBuoyancy[ SPI.MAT ] Engineering Sciences [physics]/Materials02 engineering and technologyNumerical simulationengineering.material01 natural scienceslaw.invention[SPI.MAT]Engineering Sciences [physics]/MaterialsOpticslaw0103 physical sciences[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringIrradiationLaser power scalingElectrical and Electronic Engineering010302 applied physicsComputer simulationPulsed laser irradiationbusiness.industry[ SPI.GPROC ] Engineering Sciences [physics]/Chemical and Process Engineering021001 nanoscience & nanotechnologyLaserAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsengineeringSurface profile0210 nano-technologybusinessKeyhole
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Efficient conversion of orbital Hall current to spin current for spin-orbit torque switching

2021

Spin Hall effect, an electric generation of spin current, allows for efficient control of magnetization. Recent theory revealed that orbital Hall effect creates orbital current, which can be much larger than spin Hall-induced spin current. However, orbital current cannot directly exert a torque on a ferromagnet, requiring a conversion process from orbital current to spin current. Here, we report two effective methods of the conversion through spin-orbit coupling engineering, which allows us to unambiguously demonstrate orbital-current-induced spin torque, or orbital Hall torque. We find that orbital Hall torque is greatly enhanced by introducing either a rare-earth ferromagnet Gd or a Pt in…

QC1-999FOS: Physical sciencesGeneral Physics and AstronomyApplied Physics (physics.app-ph)AstrophysicsMagnetizationHall effectMesoscale and Nanoscale Physics (cond-mat.mes-hall)ddc:530Spin (physics)CouplingPhysicsCondensed Matter - Materials ScienceCondensed matter physicsSpintronicsCondensed Matter - Mesoscale and Nanoscale PhysicsPhysicsMaterials Science (cond-mat.mtrl-sci)Physics - Applied PhysicsCondensed Matter::Mesoscopic Systems and Quantum Hall EffectQB460-466FerromagnetismSpin Hall effectCondensed Matter::Strongly Correlated ElectronsAstrophysics::Earth and Planetary AstrophysicsCurrent (fluid)
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Sensitive magnetometry in challenging environments

2020

State-of-the-art magnetic field measurements performed in shielded environments under carefully controlled conditions rarely reflect the realities of those applications envisioned in the introductions of peer-reviewed publications. Nevertheless, significant advances in magnetometer sensitivity have been accompanied by serious attempts to bring these magnetometers into the challenging working environments in which they are often required. This review discusses the ways in which various (predominantly optically pumped) magnetometer technologies have been adapted for use in a wide range of noisy and physically demanding environments.

Quantum PhysicsComputer Networks and CommunicationsMagnetometerComputer scienceAtomic Physics (physics.atom-ph)FOS: Physical sciencesApplied Physics (physics.app-ph)Physics - Applied PhysicsCondensed Matter Physics01 natural sciencesAtomic and Molecular Physics and Optics010305 fluids & plasmasElectronic Optical and Magnetic Materialslaw.inventionPhysics - Atomic PhysicsComputational Theory and Mathematicslaw0103 physical sciencesSystems engineeringddc:530Electrical and Electronic EngineeringPhysical and Theoretical Chemistry010306 general physicsQuantum Physics (quant-ph)
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Electrical readout microwave-free sensing with diamond

2022

While nitrogen-vacancy (NV-) centers have been extensively investigated in the context of spin-based quantum technologies, the spin-state readout is conventionally performed optically, which may limit miniaturization and scalability. Here, we report photoelectric readout of ground-state cross-relaxation features, which serves as a method for measuring electron spin resonance spectra of nanoscale electronic environments and also for microwave-free sensing. As a proof of concept, by systematically tuning NV centers into resonance with the target electronic system, we extracted the spectra for the P1 electronic spin bath in diamond. Such detection may enable probing optically inactive defects …

Quantum PhysicsFOS: Physical sciencesApplied Physics (physics.app-ph)Physics - Applied PhysicsQuantum Physics (quant-ph)
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1.3 µm GaInNAs optically-pumped vertical cavity semiconductor optical amplifier

2003

A GaInNAs/GaAs vertical cavity semiconductor optical amplifier (VCSOA) is reported. This is believed to be the first monolithic VCSOA operating at 1.3 mum. Under continuous-wave optical pumping in a singlemode fibre coupled format, gain figures of up to 17.7 dB were achieved. Amplification with 12 GHz bandwidth,was obtained at 12.8 dB peak gain.

Quantum opticsOptical amplifierMaterials scienceApplied physicsbusiness.industryBandwidth (signal processing)VCSOA GaInNAsOptical pumpingOpticsSemiconductorOptoelectronicsElectrical and Electronic EngineeringPhotonicsbusiness
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Optimizing charge breeding techniques for ISOL facilities in Europe: conclusions from the EMILIE project

2015

ThuM07; International audience; The present paper summarizes the results obtained from the past few years in the framework ofthe Enhanced Multi-Ionization of short-Lived Isotopes for Eurisol (EMILIE) project. The EMILIEproject aims at improving the charge breeding techniques with both Electron Cyclotron ResonanceIon Sources (ECRIS) and Electron Beam Ion Sources (EBISs) for European Radioactive Ion Beam(RIB) facilities. Within EMILIE, an original technique for debunching the beam from EBIS chargebreeders is being developed, for making an optimal use of the capabilities of CW post-acceleratorsof the future facilities. Such a debunching technique should eventually resolve duty cycle andtime st…

Radioactive ion beamsCharge injectionIon beamNuclear engineering[PHYS.PHYS.PHYS-ACC-PH]Physics [physics]/Physics [physics]/Accelerator Physics [physics.acc-ph]electron beam ion sources01 natural sciences010305 fluids & plasmasNuclear physics0103 physical scienceselectron cyclotron resonance ion sourcesTime structureCharge injectionInstrumentationElectrodes010302 applied physicsta114ta213SodiumCharge (physics)charge breedingIon beamsEnvironmental scienceBeam (structure)Radioactive beams
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Spontaneous core–shell elemental distribution in In-rich In(x)Ga1-xN nanowires grown by molecular beam epitaxy.

2014

International audience; The elemental distribution of self-organized In-rich InxGa1-xN nanowires grown by plasma-assisted molecular beam epitaxy has been investigated using three different techniques with spatial resolution on the nanoscale. Two-dimensional images and elemental profiles of single nanowires obtained by x-ray fluorescence and energy-dispersive x-ray spectroscopy, respectively, have revealed a radial gradient in the alloy composition of each individual nanowire. The spectral selectivity of resonant Raman scattering has been used to enhance the signal from very small volumes with different elemental composition within single nanowires. The combination of the three techniques ha…

Raman scatteringMaterials scienceNanostructureAnalytical chemistryNanowireBioengineering02 engineering and technologyEpitaxy01 natural sciencesMolecular physicssymbols.namesakeCondensed Matter::Materials ScienceEDXalloy0103 physical sciencesGeneral Materials ScienceElectrical and Electronic EngineeringSpectroscopy010302 applied physics[PHYS]Physics [physics]X-ray spectroscopyx-ray fluorescenceMechanical EngineeringHeterojunctionGeneral Chemistry021001 nanoscience & nanotechnologyMechanics of Materialsnanowiresymbols0210 nano-technologyRaman scatteringMolecular beam epitaxyNanotechnology
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Unveiling the role of the lone electron pair in sesquioxides at high pressure: compressibility of β-Sb2O3

2021

The structural, vibrational and electronic properties of the compressed beta-Sb2O3 polymorph, a.k.a. mineral valentinite, have been investigated in a joint experimental and theoretical study up to 23 GPa. The compressibility of the lattice parameters, unit-cell volume and polyhedral unit volume as well as the behaviour of its Raman- and IR-active modes under compression have been interpreted on the basis of ab initio theoretical simulations. Valentinite shows an unusual compressibility up to 15 GPa with four different pressure ranges, whose critical pressures are 2, 4, and 10 GPa. The pressure dependence of the main structural units, the lack of soft phonons, and the electronic density char…

Raman scatteringPhase transitionMaterials sciencePhononAb initioThermodynamics02 engineering and technologyValentinite01 natural sciencesVibrational propertiesInorganic ChemistrySb2O3Phase (matter)0103 physical sciences010302 applied physicsElectron pairStructural propertiesCompressibility021001 nanoscience & nanotechnologyX-ray diffractionHigh pressureElectronic propertiesFISICA APLICADAX-ray crystallographyCompressibility0210 nano-technologyElectronic densityDalton Transactions
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Generation of Hardware/Software systems based on CAL dataflow description

2011

International audience; This paper presents a new development of rapid prototyping tools for system design based on data-flow specifications. In this context, the efficiency of tools for the automatic translation from the data-flow programs to C and/or HDL are assessed by means of two design cases. The paper also introduces the new concept of the automatic synthesis of interfaces. Such generic interfaces are implemented by using an embedded microprocessor, which can support a large variety of interfaces already available as native IP libraries in the case of FPGA. The two design cases described here have been developed, tested and validated on different implementation platforms. The results…

Rapid prototypingComputer scienceDataflowImage ProcessingInterface (computing)Context (language use)02 engineering and technologyHardware/Software Co-Design01 natural scienceslaw.inventionDesign MethodologieslawArchitecture0103 physical sciences0202 electrical engineering electronic engineering information engineeringMatching[ INFO.INFO-ES ] Computer Science [cs]/Embedded SystemsField-programmable gate array010302 applied physicsFlexibility (engineering)CALACMHardware/Software020202 computer hardware & architectureAlgorithmMicroprocessorComputer architectureSignal ProcessingHW/SWSystems designinterface[INFO.INFO-ES]Computer Science [cs]/Embedded Systems
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