Search for tag: "semiconductor technology"

Greatest Hits of MBE (Schlom)

2019 Cornell Summer School LINK to presentation slides

summerindium arsenidekey aspectlead oxideconcepts in physicstemperature techniqueceiling technologycold wallatomic stepsspray canscompound semiconductorsheat transferhot walldensityquantum hallinorganic compoundsseparate sourcesengine technologym.b.e.teachingarchitectural elementsgrowth conditionsarsenic sourceoxidesunit cellsvacuumcritical current densitydiffraction patternlaboratory equipmentsuper latticeindependent controlopticsoscillationhuge differencestep edgebell labsjoseph allisonschool typesfilm reportediii-v compoundsresistivity ratiohardware (mechanical)oxidizing agentsgrowth modeoral communicationjohn arthuralcatel bell laboratoriesspray paintingelectron beamgreat thingdedicated shuttersarsenic richvapor pressurearsenic pressurepressurebroken equipmentlosing arsenicgas phasefaculty memberhigher pressuresunderlying substrategrowth windowmolecular beamgallium arsenidetemperaturehigh mobilitythermodynamicsgasesquantum mechanicssingle phasehigh performancesingle modelelectromagnetismvolatile speciesread oscillationschemical engineeringgreat questionepa taximap attackphysical quantitiescondensed matter physicsmodulation dopingmeteorologysummer schoolelectrical engineeringstate functionsmagnitude higherultra high vacuum$76.00 inchhighest mobilityseparate temperaturecaption completegreat capabilityquantum electronicscopper gasketlong wordsemiconductor materialsbanking termsarsenidesgrowth ratevacuum chambersuperconductivitypayment systemsknife edgeiarc group 1 carcinogensfree pathfusion lengthm.b.educational psychologyzinc oxidelow temperaturenational medale-commerceroom temperatureindia martian nightnobel prizefractional quantum hall
From  James Overhiser on July 30th, 2019 69 plays

2017 REU Daniel Teal CNF HHMI KEP PARADIM REU Nano-Convocation

d.n.a.laser diffractionu.v.positive resistchemical compositiontiny moleculesconcepts in physicssilicon dioxidechemical elementspressure dropbiological functionmirror stacktop-level domainselectric potentialcnfi.t.t.l.d.electricityd.v.r.optical devicesreducing agentsmoleculesphoto resistsignal processingtaper channelsmooth surfaceoxidesopposite directionprotein spotinitial pressuredistributed bragsocial conceptsp.d.s.cognitionmicroscopydigital electronicselectric fieldelectrical componentspretty coolbacterial mechanicsfluid flowelectrons movingelectric currentbeam scatteringfrequencydesignmeasurementelectrodebacteriamachinescell biologyoptical microscopesubstract printinternational technology roadmap for semiconductors lithography nodesreucurrentpretty goodplasma cleannormal electronicmolecular machinesdouble helixcrystal qualityanthropologytuning forkstamping methodextrusion loadingelectrical currentgeometryelectric materialimmune cellsk.p.h.300 nanometerpolymer brusheselectronic signalimage processing$0.00 nanometerselectrostaticsfictionliterature valuesmegahertz wavemolecular biologyelectronic devicetransistord.v.r. stacksdeep u.v.unique mechanical propertiessoundphysical quantitiesmotor proteinsnanometer protein spotssemiconductor device fabricationelectronic circuitsnegative resistd.n.a. bindingmatterprintingultra smooth surfacespectroscopyelectrical engineeringmechanicsstate functionsmechanical systemsilicon wafergraphenesingle moleculeincubation timecrystalsmetaphysicscaption completecarbon formsdocumentssandwich structureatomic layer depositiondiffraction gratingpotentialinside talkselectricacoustic wavegold electrodesdevicemediasiteelectromagnetismphotonicsside walldiffractionwallspattern protein$25.00 k.p.h.mass mediabehaviorismbiotechnologychemistrytantalum oxidepolymer chains
From  James Overhiser on February 18th, 2019 5 plays

2017 REU Dante Avalos CNF HHMI KEP PARADIM REU Nano-Convocation

d.n.a.laser diffractionu.v.positive resistchemical compositiontiny moleculesconcepts in physicssilicon dioxidepressure dropbiological functionmirror stackelectric potentiali.t.t.l.d.electricitycherryd.v.r.optical devicesmoleculesstainsignal processingtaper channelsmooth surfaceoxidesopposite directionprotein spotinitial pressureuniquedistributed bragsocial conceptsp.d.s.cognitionproteinsmicroscopyelementary geometrydigital electronicselectric fieldpretty coolbacterial mechanicsfluid flowelectrons movingelectric currentbeam scatteringdesignsingle moleculehappenbacteriamachinesmechanical propertiesgeneticscell biologyoptical microscopesubstract printinternational technology roadmap for semiconductors lithography nodesreucnfinternetpretty goodmethodplasmidplasma cleannormal electronicmolecular machinesdouble helixcrystal qualityanthropologycontroltuning forkcontaminationstamping methodextrusion loadingchangetopologygeometryelectric materialstudiesk.p.h.fantasticcolor300 nanometerpolymer brusheselectronic signalimage processing$0.00 nanometerselectrostaticsquestionfictionattachelectrical currentliterature valuesmegahertz wavemolecular biologyelectronic deviced.v.r. stacksdeep u.v.unique mechanical propertiesphysical quantitiesmotor proteinsnanometer protein spotssemiconductor device fabricationelectronic circuitsnegative resistd.n.a. bindingmatterprintingultra smooth surfacespectroscopyelectrical engineeringgroovemechanicsmechanical systemprocesssilicon waferbindingsurfacecharacterizeincubation timecrystalsproteinmetaphysicscaption completedocumentssandwich structureatomic layer depositiondiffraction gratingpotentialinside talkspicturelaundryacoustic waveoptical spectrumgold electrodesmediasiteelectromagnetismphotonicsimmune cellsside walldiffractionwallspattern protein$25.00 k.p.h.photo resistbehaviorismbiotechnologychemistrytantalum oxidepolymer chains
From  James Overhiser on February 18th, 2019 0 plays

2017 REU Monica Lopez Martinez CNF HHMI KEP PARADIM REU Nano-Convocation

d.n.a.laser diffractionu.v.positive resistchemical compositiontiny moleculesconcepts in physicssilicon dioxidepressure dropbiological functionadjustmentmirror stackelectric potentialcnfi.t.t.l.d.electricityd.v.r.optical devicesmoleculesmagneticsignal processingtaper channelsmooth surfaceoxidesopposite directionprotein spotinitial pressuredistributed bragsocial conceptsp.d.s.cognitionproteinsmicroscopydigital electronicselectric fieldpretty coolbacterial mechanicsfluid flowelectrons movingelectric currentbeam scatteringdesignsingle moleculetetherbacteriamachinescell biologyoptical microscopesubstract printinternational technology roadmap for semiconductors lithography nodesreuincreasepretty goodplasma cleanelectron beamnormal electronicmolecular machinesdouble helixcrystal qualityanthropologytuning forkstamping methodextrusion loadingpropertieselectrical currentgeometryelectric materialamountimmune cellsk.p.h.features300 nanometerpolymer brusheselectronic signalimage processing$0.00 nanometerselectrostaticsspotsfictionliterature valuesmegahertz wavemolecular biologyelectronic devicesurfaced.v.r. stacksdeep u.v.unique mechanical propertiesprotocolsphysical quantitiesmotor proteinsnanometer protein spotssemiconductor device fabricationelectronic circuitsnegative resistd.n.a. bindingmatterprintingultra smooth surfacespectroscopyelectrical engineeringmechanicsmechanical systemsilicon wafercurvesincubation timecrystalsmetaphysicscaption completedocumentssandwich structureatomic layer depositiondiffraction gratingpotentialinside talksmoleculeacoustic wavegold electrodesmediasiteelectromagnetismphotonicsside walldiffractionwallspattern protein$25.00 k.p.h.photo resistbehaviorismbiotechnologychemistrytantalum oxidepolymer chains
From  James Overhiser on February 18th, 2019 0 plays

2017 REU Michael Klaczko CNF HHMI KEP PARADIM REU Nano-Convocation

d.n.a.laser diffractionu.v.positive resistchemical compositiontiny moleculesconcepts in physicssilicon dioxidechemical elementspressure dropbiological functionscatteringmirror stackelectric potentiali.t.t.l.d.electricitytransparentd.v.r.optical devicesmoleculessignal processingtaper channelsmooth surfaceoxidesopposite directionprotein spotinitial pressuredistributed bragside wallssocial conceptssubstratep.d.s.cognitionmicroscopyspecificdigital electronicselectric fieldbrushpretty coolbacterial mechanicsfluid flowelectrons movingelectric currentbeam scatteringdesignsingle moleculewavelengthbacteriamachinescell biologyoptical microscopedietary mineralsimage processingsubstract printinternational technology roadmap for semiconductors lithography nodesreucnfpretty goodplasma cleanoccupational safety and healthnormal electronicmolecular machinesdouble helixcrystal qualityanthropologytuning forkstamping methodextrusion loadingtopologygeometryelectric materialimmune cellsk.p.h.300 nanometerpolymer brushestransition metalselectronic signalchromium$0.00 nanometerselectrostaticsquestionfictionelectrical currentliterature valuesmegahertz wavemolecular biologyelectronic deviced.v.r. stacksdeep u.v.unique mechanical propertiesphysical quantitiesmotor proteinsnanometer protein spotssemiconductor device fabricationelectronic circuitsnegative resistd.n.a. bindingmatterprintingultra smooth surfacespectroscopyelectrical engineeringmechanicsmechanical systemprocesssilicon wafersurfaceincubation timecrystalsmetaphysicscaption completedocumentssandwich structureatomic layer depositiondiffraction gratingpotentialinside talksacoustic wavegold electrodesmediasitestructureelectromagnetisminitiatorphotonicsside wallspacediffractionwallspattern protein$25.00 k.p.h.photo resistbehaviorismbiotechnologychemistrytantalum oxidepolymer chains
From  James Overhiser on February 18th, 2019 0 plays

2017 REU Gabriel Guisado CNF HHMI KEP PARADIM REU Nano-Convocation

d.n.a.laser diffractionu.v.positive resistchemical compositiontiny moleculesconcepts in physicsresistancesilicon dioxideexperimentspressure dropindustrial processesbiological functionmirror stacktop-level domainselectric potentialcnfi.t.t.l.d.electricityd.v.r.optical devicesmoleculessignal processingdistancetaper channelsmooth surfaceoxidesopposite directionprotein spotinitial pressurepenetrateinfectious diseasesdistributed bragconditionsocial conceptsp.d.s.cognitionmicroscopydigital electronicselectric fieldpretty coolbacterial mechanicsfluid flowelectrons movingelectric currentbeam scatteringdesignsingle moleculebacteriamachinesfluid dynamicscell biologyoptical microscopesubstract printinternational technology roadmap for semiconductors lithography nodesreuincreasepretty goodplasma cleannormal electronicmolecular machinesdouble helixcrystal qualityanthropologytuning forkstamping methodextrusion loadingelectrical currentgeometryelectric materialimmune cellsk.p.h.300 nanometerpolymer brusheselectronic signalimage processing$0.00 nanometerselectrostaticsquestionfictionexposureliterature valuesmegahertz wavemolecular biologyelectronic deviceinfectiond.v.r. stacksdeep u.v.unique mechanical propertiesphysical quantitiesmotor proteinsnanometer protein spotssemiconductor device fabricationelectronic circuitsnegative resistd.n.a. bindingmatterprintingultra smooth surfacespectroscopyelectrical engineeringside wallmechanicsstate functionsmechanical systemsilicon waferincubation timecrystalsmetaphysicscaption completedocumentssandwich structureatomic layer depositiondiffraction gratingpotentialinside talksconstrictionphotographychannelacoustic wavegold electrodesdevicemediasitefluid mechanicselectromagnetismphotonicsprofessordiffractionwallspattern protein$25.00 k.p.h.photo resistbehaviorismbiotechnologychemistrytantalum oxidepolymer chains
From  James Overhiser on February 18th, 2019 1 plays

2017 REU Jonathan Chandonait CNF HHMI KEP PARADIM REU Nano-Convocation

d.n.a.laser diffractionu.v.positive resistchemical compositiontiny moleculesconcepts in physicssilicon dioxidepressure dropbiological functionreumirror stackelectric potentiali.t.t.l.d.electricityabsorptiond.v.r.optical devicesmoleculessignal processingtaper channelmaterialsmooth surfaceoxidesopposite directionprotein spotinitial pressuredistributed bragsocial conceptssubstratep.d.s.cognitionmicroscopydigital electronicselectric fieldopticspretty coolbacterial mechanicsfluid flowphilosophical terminologyelectrons movingelectric currentbeam scatteringdesignsingle moleculewavelengthphoton reflectionsnanometerbacteriamachinescell biologyoptical microscopesubstract printinternational technology roadmap for semiconductors lithography nodesthicknesscnfpretty goodplasma cleannormal electronicmolecular machinesdouble helixcrystal qualityanthropologytuning forkstamping methodextrusion loadingelectrical currentchemical processesgeometryelectric materialrefractionimmune cellsk.p.h.300 nanometerpolymer brusheselectronic signalimage processingreflector$0.00 nanometerselectrostaticsopportunityfictionliterature valuesmegahertz wavemolecular biologyelectronic deviced.v.r. stacksdeep u.v.unique mechanical propertiesproject managementphysical quantitiesmotor proteinsnanometer protein spotssemiconductor device fabricationelectronic circuitsnegative resistd.n.a. bindingmatterprintingultra smooth surfacespectroscopyelectrical engineeringproblemmechanicsmechanical systemd.b.silicon waferincubation timecrystalsmetaphysicscaption completedocumentssandwich structureatomic layer depositiondiffraction gratingroughnesspotentialinside talksacoustic wavegold electrodesmediasitecompatibilityelectromagnetismphotonicsside walldiffractionwallspurificationpattern protein$25.00 k.p.h.photo resistbehaviorismbiotechnologychemistrytantalum oxidepolymer chains
From  James Overhiser on February 18th, 2019 1 plays

2017 CNF HHMI KEP PARADIM REU Nano-Convocation - Session 3_001

d.n.a.substract printu.v.positive resistchemical compositiontiny moleculesconcepts in physicssilicon dioxidepressure dropbiological functionmirror stackelectric potentiali.t.t.l.d.electricityd.v.r.optical devicesmoleculessignal processingtaper channelsmooth surfaceoxidesopposite directionprotein spotinitial pressuredistributed bragsocial conceptsp.d.s.cognitionmicroscopydigital electronicselectric fieldpretty coolbacterial mechanicsfluid flowelectrons movingelectric currentbeam scatteringdesignsingle moleculebacteriamachinescell biologyoptical microscopelaser diffractioninternational technology roadmap for semiconductors lithography nodesreucnfpretty goodplasma cleannormal electronicmolecular machinesdouble helixcrystal qualityanthropologytuning forkstamping methodextrusion loadingelectrical currentgeometryelectric materialimmune cellsk.p.h.300 nanometerpolymer brusheselectronic signalimage processing$0.00 nanometerselectrostaticsfictionliterature valuesmegahertz wavemolecular biologyelectronic deviced.v.r. stacksdeep u.v.unique mechanical propertiesphysical quantitiesmotor proteinsnanometer protein spotssemiconductor device fabricationelectronic circuitsnegative resistd.n.a. bindingmatterprintingultra smooth surfacespectroscopyelectrical engineeringmechanicsmechanical systemsilicon waferincubation timecrystalsmetaphysicscaption completedocumentssandwich structureatomic layer depositiondiffraction gratingpotentialinside talksacoustic wavegold electrodesmediasiteelectromagnetismphotonicsside walldiffractionwallspattern protein$25.00 k.p.h.photo resistbehaviorismbiotechnologychemistrytantalum oxidepolymer chains
From  James Overhiser on February 15th, 2019 6 plays

Schrodinger equation and mean-field approximation - Lecture 1.2

2016 PARADIM SUMMER SCHOOL Feliciano Giustino - Lecture 1.2

concepts in physicschemical elementssimple equationsolutionscharacteristic energybody wave functionelectronic structurecorrelation potentialelectron densityarchitectural elementssquare divided1st principleselectronegyptian artefact typesgrammarparticle equationelectron chargeforcekinetic energy potentialenergyphilosophical terminologyprinciplesnuclear masshydrogen physics1st electronparticle physicsquantum chemistrychemical propertiesbody problemstarting pointcool interactionbiology and pharmacology of chemical elementsspintronicsf.t.environmental sciencepeople talkatomsindependent particlefunctions and mappingspotential exactedchemical processesexclusion principlehelium atomconservation lawsmechanicsextra potentialelectronic structure methodselectron basicallycommunicationforms of energyreference frametomorrow morningexperimental parameterelectrostaticscomplex numberquantum mechanicshydrogen wave functionscompletely ignoresingle particleminus $13.00quantum modelsairship technology100 yearspotential energy comingphysical quantitiesbasically minuscondensed matter physicspotential energyhydrogen atomindependent eventsnuclear potentialpretty tablecolumn interactionstate functions40000 pointstakes caremathematical terminologysquare modelheliumphysical principlecaption completesingle particle equationhydrogensemiconductor materialskinetic energyexchange potentialtotal energyindependent electrongood newspartial differential equationselectron mass1st stephuman communicationelectromagnetismelectronic variablesatomic numbermasswave function
From  James Overhiser on February 15th, 2019 46 plays

CNF NanoCourses 2004 – Section 3.2: Thin Film Properties,

From  David Botsch on January 20th, 2012 56 plays

CNF NanoCourses 2004 – Section 3.2: Thin Film Properties,

cubic mineralsseparation processesphysical phenomenaenvironmental sciencepyrotechnic fuelsaccountancyconfectionerysteelatmospheric thermodynamicscrystallographycharge carrierspropertynuclear physicssemiconductor device fabricationtransformationssupply chain management termselectronics terminologybodies of watertopologyelectromagnetic radiationalgebrasedimentary rocksaquatic ecologyproperty lawmetal platingwatersnow removalliquidscorrosionconcepts in physicsmanufacturingphysical objectsatomic physicsfuelsnatural philosophyfluid dynamicstemperaturepressureplasma processingphilosophical terminologygeomorphologychemical compoundseducational psychologyphase transitionsfluvial landformschemical engineeringdistributionphilosophy of lawphotographycell biologycoppervolume ratiosystems scienceerosion landformsforms of watersandtechnologygrain boundaryphases of mattermetalshistorical scientific instrumentsfluid mechanicssuperhard materialscarbidessnowpedologyoxidescharacteristiccommunicationtransition metalslaboratory equipmentsolid-state chemistrybiology and pharmacology of chemical elementsnonmetalsconstructionbiomoleculesdiffusionmaterials scienceproduction and manufacturingsemiconductormaterialelectronicsgaseschemical kineticschemistryenergycaption completeelectric and magnetic fields in mattersystems theoryinformationsedimentologydielectricsglasscompound semiconductorscrystalplasma physicssurface chemistryreducing agentsphysiologythermodynamiceconomic anthropologycondensed matter physicsindustrial processeselectric fieldmemoryicecoatingsthermodynamicssemiconductorsprecipitationchemical propertiescontaminationpackaging materialsheat transferbuilding materialsdietary mineralsgrainthin filmnitridesphysical chemistrysurfacecrystalselectricityfilmsmineralogymicroscopesstate functionsmarketingelectromagnetismlogisticspolitical philosophysolutionspoly crystalinformation scienceelectrical conductorsvolumemetallurgydepositionnerve gascomputer sciencevacuumgeometrymolecular physicsmeteorologythin-film cellsindustrysolvents
From  David Botsch on January 20th, 2012 123 plays

CNF NanoCourses 2004 – Section 2.2: Vacuum System Performa

structural engineeringcharge carriersoxygen compoundsforms of waterwater in gaslengthtransport phenomenametallurgymattersourcewatertemperaturevacuumelectronic amplifiersvalveschemistryeuphemismssubatomic particlesscatteringdietary mineralsspectrometerclassical mechanicscontinuum mechanicsmagnetismstaticsindustrial processessystems theoryhydraulicsglaciologymolecular physicscontrol engineeringnatural resourcesmultiplierlaboratory equipmentcondensed matter physicshand toolsmeasurementvacuum pumpschemical engineeringelectrical conductorsphases of matterconcepts in physicselementary mathematicsanalytical chemistryatmospheric thermodynamicsfuelsatomic physicssurfaceflangeopticsnitrogenoccupational safety and healthmoleculepumpsmass spectrometrycontaminationtoolslightmeasuring instrumentsvaporreducing agentsoxidizing agentscyberneticsmechanicsquarksmicroscopesmedical terminologysensory systemionsseals (mechanical)audio engineeringquantum electrodynamicseyeforceapplied and interdisciplinary physicsspectrometersvalvedielectricsbuilding materialselectromagnetismheat transferphilosophical terminologysemiconductor devicessemiconductorsaudio effectsphotographybiology and pharmacology of chemical elementswoodworkingelectrodesplumbingfilter theorysystems engineeringtransition metalsfuel gaskinematicsphysical sciencesgroup theorynuclear power plant componentsspectroscopyscientific terminologyupper limb anatomybuilding engineeringmaterials sciencegeometrycomputer graphicsaccelerator physicsgasesparticle physicselectronengine technologyprocesshazardous air pollutantselectricityratioselectronic circuitsmeteorologyvacuum systemchemical propertiesengineeringnonmetalspipingscientific techniqueselectromagnetic radiationphysical chemistrypsychrometricsneurological disordersmechanical engineeringpneumaticshydrocarbonpotentialelectronicsbiomoleculesenergymasspressureglass applicationshepatologylinear filtersplantsquantum mechanicssignal processingsystemglasscontrol theoryfluid dynamicssufferingnuclear physicssolutionsfluid mechanicsnatural philosophyoxidesthingsteelthermodynamicsmaterialmetalsstainlessgreenhouse gasesvacuum systemshistorical scientific instrumentswater vapormoleculesalgebra
From  David Botsch on January 20th, 2012 41 plays