简介:SECRALIIisthesecondfullysuperconductingECRionsourcedevelopedatIMP.It’salmosttheduplicateofSECRAL,exceptforthecryogenicsystem[1].SECRALIIhasintegratedLHerecondensationsystem,whichhasthedynamiccoolingcapacityofmorethan5W.ThemainparametersofSECRALI&IIareshowninTable1.ThemagnetsofSECRALIIhasbeensuccessfullyfabricatedandtestedin2015.In2016,SECRALIIhasbeencommissionedat18and28GHzwithOandXeionbeams,whichhasgivenverypromisingresults.
简介:Wereportonaone-stageerbium-dopedfibreamplifiedspontaneousemission(ASE)sourcewith80nmbandwidthand13.5dBmoutputpower.thebroadbandwidtherbiumASEsourcewasrealizedinanerbium-dopedfibrewith37mlengthbya1480nmlaserdiodeanda980nmlaserdiodeasforwardandbackwardpumpsources,respectively.Thetotalpumppowerisonly95.7mW.
简介:Variousagriculturalcropresiduesincludingcornstover,corncob,andsorghumstalkwithamoisturecontentof75wt%weresubjectedtoalongpretreatment(12-60h)withsupercriticalCO2(scCO2),atlowtemperature(50-80℃)andapressureof17.5-25.0Mpa.Thesugaryieldsfromtheenzymatichydrolysis(EH)ofthepretreatedsampleswereasmuchasthree-tofourfoldgreaterthanthoseaffordedbytherawmaterials.However,whenpretreatmentwasconductedwithinashorttime(e.g.0.5h),aspreviouslyreportedintheliterature,onlyaslightincreaseintheEHsugaryieldswasobserved.TheproposedscCO2pretreatmentmechanismdemonstratedtheroleofmoistureinthesystem.Wetting,softening,andswellingwereobservedtomainlyaffectthelignocellulosewhenasuitableamountofwaterwasadded.Finally,thesampleswereanalysedbyX-raydiffractionandscanningelectronmicroscopy,beforeandafterpretreatment,toinvestigatethechangesinthemicroscopicstructureofthebiomass.
简介:阐述了20kV固态Marx脉冲调制器的设计原理、结构特点及驱动控制方法。该系统由8级模块串联而成,每级模块的储能电容、高压充电和固态开关驱动供电均采用高压硅堆隔离,Marx模块采用两只独立控制的高压绝缘栅双极型晶体管(insulatedgatebipolartran-Sstor,IGBT)对模块的储能电容实现充电和放电。IGBT驱动电路采用高压硅堆隔离供电、光纤传输触发脉冲和高性能IGBT驱动模块TD350设计构成。驱动电路具备完善的欠压、过流和过压保护功能。Marx模块采用插拔式结构,维护快捷简便。脉冲源在无强化散热措施条件下,输出方形高压脉冲幅度大于20kV,脉冲宽度为10ps,脉冲前后沿均为300ns,重复频率可达1kHz。
简介:HeBinglinwasbornonAugust24,1918inFanyuCounty,GuangdongProvince.HegraduatedfromtheChemistryDepartmentofSouthwestAssociatedUniversityin1942.AftergraduationheworkedinChongqingCentralInstituteofIndustryforoneyearasanassistantengineerandthenreturnedtohisAlmaMaterUniversity
简介:Inordertodeepentheunderstandingofthedifferencebetween0!1and1!0sinleeventupset(SEU)cross-sectioninanovelactivedelayelement(ADE)SRAM(StaticRandomAccessMemory)cell,theirradiationwascarriedoutatHeavyIonResearchFacilityinLanzhou(HIRFL).Usingthe86Kr26+ionsirradiatedthedeviceundertest(DUT)adoptedpartiallydepleted(PD)siliconofinsulator(SOI)technology.ThefeaturesizeofDUTfabricatedbyinstituteofmicroelectronic(IME)was180nm.TheschematicdiagramofSEUhardenADE-SRAMcellisshowninFig.1.TheADEisessentiallyaNMOSconnectedinonlyoneofthefeedbackpathsbetweenthetwoinventorsofthememorycell.Itplaysaroleasswitchingtransistor.Exceptduringawriteoperation,whentheswitchtransistoristurnedon(soasnottocompromisethewritespeed),theoff-ADEprovidesamuchgreaterRCdelaybetweenthetwoinventorsofthememorycelltoachievemuchimprovedSEUhardness[1].
简介:Thermoelectricityisatherrnorelatedpropertythatisofgreatimportanceinsingle-moleculejunctions.Theelectricalconductance(σ),electron-derivedthermalconductance(kel)andSeebeckcoefficient(S)ofBgo-basedsingle-moleculejunctionsareinvestigatedbyusingdensityfunctionaltheoryincombinationwithnon-equilibriumGreen'sfunction.Whenthedistancebetweentheleft/rightelectrodesis11.4A,therelationshipbetweenσandkelobeystheWiedemann-FranzlawverywellbecauseofthestronghybridizationbetweenB80molecularorbitalsandthesurfacestatesofAuelectrodes.Furthermore,thecalculatedLorenznumberisclosetothefamousvalueinmetalordegeneratesemiconductors.Inaddition,Sisonly—19.09μV/Kat300K,thusleadingtothesmallerelectron'sthermoelectriefigureofmerit(ZeiT=S^2σT/Kel).Interestingly,thestrainandchemicalpotentialcanmodulateB80-basedsingle-moleculejunctionsfromn-typetop-typewhenthecompressivestrainreaches—0.6Aorthechemicalpotentialshiftsto—0.16eV.ThismightbeattributedthatSreflectstheasymmetryintheelectricalconductancewithrespecttothechemicalpotentialandisproportionaltotheslopesofthetransmissionspectrum.
简介:Theα-decayofneutron-deficientheavynucleifarfromstabilityisanindispensablespectroscopictooltostudytheirlow-energystructure.220Pa,atrans-leadisotopeneartheshellclosureN=126,itsdecaypropertiesarestillnotwellestablished,thoughitwasstudiedintwoα-decayexperiments30yearsago[1,2].Recently,weappliedsuccessfullythemoderndigitalpulseprocessing(DPP)technique[3,4]tothedecayspectroscopyintheZ≥91andN=128~131region[5]andthedecaychainof220Pawasestablishedatthefirsttime.
简介:TargetResiduesfromInteractionofUraniumwith20MeV/u40ArIons¥QinZhi;LiWenxin;SunTongyu;ZhaoLin;ZhangXiang;YinXinming;?..
简介:Multi-nucleontransferreactionplaysanimportantroleinthesynthesisofnewnuclides[1].Inthereactionsof20Ne+209Bi,someshort-livednucleiproducedbytransferring26nucleonswerediscovered.Theexperimentof20Ne+209Biwasperformedatgas-filledrecoilseparatorinLanzhou[2].A400g/cm2thick209Bitargetwasbombardedwith20NebeamdeliveredbyacceleratorHIRFL.
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