Search results for "Thermionic emission"

showing 10 items of 13 documents

Thermal activated carrier transfer between InAs quantum dots in very low density samples

2010

In this work we develop a detailed experimental study of the exciton recombination dynamics as a function of temperature on QD-ensembles and single QDs in two low density samples having 16.5 and 25 dots/¼m2. We corroborate at the single QD level the limitation of the exciton recombination time in the smallest QDs of the distribution by thermionic emission (electron emission in transient conditions). A portion of these emitted carriers is retrapped again in other (larger) QDs, but not very distant from those emitting the carriers, because the process is limited by the diffusion length at the considered temperature.

HistoryWork (thermodynamics)Condensed Matter::Otherbusiness.industryChemistryExcitonThermionic emissionElectron66.30.H- Self-diffusion and ionic conduction in nonmetals78.67.Hc Quantum dotsCondensed Matter::Mesoscopic Systems and Quantum Hall EffectMolecular physicsComputer Science ApplicationsEducationCondensed Matter::Materials Science78.55.Cr III-V semiconductorsQuantum dotThermalOptoelectronics71.35.-y Excitons and related phenomenaDiffusion (business)businessRecombination79.40.+z Thermionic emissionJournal of Physics: Conference Series
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Barium depletion study on impregnated cathodes and lifetime prediction

2003

In the thermionic cathodes used in cathode ray-tubes (CRTs), barium is the key element for the electronic emission. In the case of the dispenser cathodes made of a porous tungsten pellet impregnated with Ba, Ca aluminates, the evaporation of Ba determines the cathode lifetime with respect to emission performance in the CRT. The Ba evaporation results in progressive depletion of the impregnating material inside the pellet. In the present work, the Ba depletion with time has been extensively characterized over a large range of cathode temperature. Calculations using the depletion data allowed modeling of the depletion as a function of key parameters. The link between measured depletion and em…

Materials scienceAnalytical chemistryEvaporationGeneral Physics and Astronomychemistry.chemical_elementThermionic emissionBariumSurfaces and InterfacesGeneral ChemistryTungstenCondensed Matter PhysicsAccelerated agingCathodeSurfaces Coatings and Filmslaw.inventionchemistrylawPelletPorosityApplied Surface Science
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Formation and Rupture of Schottky Nanocontacts on ZnO Nanocolumns

2007

In this paper, the electrical transport and mechanical properties of Pt/ZnO Schottky nanocontacts have been studied simultaneously during the formation and rupture of the nanocontacts. By combining multidimensional conducting scanning force spectroscopy with appropriated data processing, the physical relevant parameters (the ideality factor, the Schottky barrier height, and the rupture voltage) are obtained. It has been found that the transport curves strongly depend on the loading force. For loading forces higher than a threshold value, the transport characteristics are similar to those of large-area Schottky contact, while below this threshold deviations from strictly thermionic emission …

Materials scienceMacromolecular SubstancesSurface PropertiesSchottky barrierMolecular ConformationBioengineeringNanotechnologyThermionic emissionElectrical resistivity and conductivityMaterials TestingElectrochemistryNanotechnologyGeneral Materials ScienceParticle SizeNanotubesCondensed matter physicsbusiness.industryMechanical EngineeringElectric ConductivityForce spectroscopySchottky diodeEquipment DesignGeneral ChemistryCondensed Matter PhysicsEquipment Failure AnalysisSemiconductorSemiconductorsNanoelectronicsNanodotZinc OxideCrystallizationbusinessMicroelectrodesNano Letters
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Temperature dependent optical properties of stacked InGaAs/GaAs quantum rings

2008

4 páginas, 3 figuras, 2 tablas.-- MADICA 2006 Conference, Fifth Maghreb-Europe Meeting on Materials and their Applicatons for Devices and Physical, Chemical and Biological Sensors

Materials sciencePhotoluminescenceAtmospheric escapeTime resolved photoluminescenceExcitonBioengineeringThermionic emissionActivation energyCondensed Matter::Mesoscopic Systems and Quantum Hall EffectBiomaterialsCondensed Matter::Materials ScienceMechanics of MaterialsExcited stateQuantum ringsVertical stacksAtomic physicsQuantumRecombination
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Untersuchung der Feldelektronenemission und ihrer Temperaturabh�ngigkeit bei Stromst�rken zwischen 10?14 und 10?19 A

1964

The field emission of a tungsten point cathode at very low emission currents was investigated by means of a secondary emission multiplier. The validity of the Fowler-Nordheim equation was experimentally confirmed within the range from 10−8 to 10−19 A. The dependence of the total emission current on temperature and electrical field strength was measured in the transition region between thermionic and field emission. A comparison is drawn with the theory ofMurphy andGood.

Nuclear and High Energy PhysicsMaterials scienceAstrophysics::High Energy Astrophysical Phenomenachemistry.chemical_elementThermionic emissionAstrophysics::Cosmology and Extragalactic AstrophysicsTungstenElectrical field strengthCathodelaw.inventionField electron emissionchemistrylawLow emissionSecondary emissionPhysics::Accelerator PhysicsNuclear fusionAtomic physicsAstrophysics::Galaxy AstrophysicsZeitschrift f�r Physik
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The Boltzmann Probability as a Unifying Approach to Different Phenomena

2010

We discuss a pedagogical approach to the role of the Boltzmann probability in describing the temperature dependence of three simple experimental situations. The approach has been experimented in an introductory course on statistical mechanics for undergraduate engineering students at University of Palermo.

Physics4. Education05 social sciencesPhysics education050301 educationGeneral Physics and AstronomyStatistical mechanics01 natural sciencesBoltzmann equationBoltzmann distributionsymbols.namesakeviscous liquids flowSimple (abstract algebra)Boltzmann probability0103 physical sciencesBoltzmann constantComputingMilieux_COMPUTERSANDEDUCATIONsymbolschemical clock reactionthermionic emissionUndergraduate engineeringStatistical physics010306 general physics0503 education
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Untersuchung verschiedener Elektronenemissionsprozesse auf Mehrfachemission

1965

A comparison of the pulse hight distribution of several electron emission processes is drawn. Thermionic electrons, photoelectrons, field electrons and exoelectrons are found to be emitted as single electrons.

PhysicsNuclear and High Energy PhysicsField (physics)Physics::Instrumentation and DetectorsAstrophysics::High Energy Astrophysical PhenomenaElectron multiplierSecondary emissionNuclear fusionThermionic emissionElectronAtomic physicsPhotoelectric effectSecondary electronsZeitschrift f�r Physik
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Single-component plasma of photoelectrons

2007

Abstract Ten-nanosecond pulses of photoelectrons liberated by intense UV laser pulses from a thin gold layer are captured into a single-component plasma that is ideally suited to cool antiprotons ( p ¯ ) for antihydrogen ( H ¯ ) production. Up to a billion electrons are accumulated using a series of laser pulses, more than are needed for efficient p ¯ cooling in the large traps now being used for loading p ¯ for H ¯ production. The method is demonstrated within an enclosed vacuum space that is entirely at 4 K, and is thus compatible with the exceptional cryogenic vacuum that is desirable for the long-term storage of antihydrogen. The pitfalls of other electron accumulation methods are entir…

PhysicsNuclear and High Energy PhysicsThermionic emissionPlasmaElectronPhotoelectric effectLaserlaw.inventionField electron emissionlawAntimatterPhysics::Atomic PhysicsAtomic physicsAntihydrogenPhysics Letters B
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An experiment on the velocity distribution of thermionic electrons

2010

This paper describes an undergraduate experiment that yields the velocity distribution of thermionic electrons by analyzing the I-V characteristics of diodes and triodes. The experiment allows students to focus on the distribution function more than on difficulties arising from the complexity of thermionic emission. By using a simple model, the velocity distribution of thermionic electrons emitted by the vacuum tube cathode can be described by Maxwell’s distribution.

PhysicsPhysics::Instrumentation and DetectorsSettore FIS/08 - Didattica E Storia Della FisicaVacuum tubeGeneral Physics and AstronomyThermionic emissionElectronThermionic emissionMaxwell–Boltzmann distributionCathodeComputational physicslaw.inventionsymbols.namesakeDistribution functionClassical mechanicsMaxwell distributionTriodelawsymbolsPhysics::Accelerator PhysicsDiodeAmerican Journal of Physics
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Phänomenologische Betrachtung zur Photon-Elektron-Wechselwirkung in einem Plasma

1961

The question at stake is, whether a simple physical connection may be found between Richardson equation for thermionic emission on the one hand, and Richardson equation for photoelectric emission on the other hand. The proposition of such a connection is based on the following supposition: that electrons are not only elements of a (Fermi-Dirac-) statistical ensemble and, as such, cause thermionic phenomena; but that they can also interact with a radiation field, thereby causing an additional emission current, according to Richardson (photoelectric) equation. — It is shown in detail that the current emitted from a metal of 2000 °K is determined by the complete radiation of this metal only to…

PhysicsStatistical ensembleNuclear and High Energy PhysicsNuclear fusionThermionic emissionElectronCurrent (fluid)Atomic physicsRadiationPhotoelectric effectExcitationZeitschrift für Physik
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