简介:Usingbi-spinorfieldswewritethepseudo-scalarandbi-spinorfieldsthatarecharacterizedbythefieldfunctionsofcoordinatesofseveralparticles,namelymulti-particlefields.Byapplyingthequantizationproceduretothesemulti-particlefields,hadroniccreationandannihilationoperatorshavebeenobtained.
简介:Thebeamof35MeV/u~(40)ArwasdeliveredbyHIRFL(HeavyIonResearchFacilityatLanzhou).Atargetof674μg/cm~(2197)Auwasusedintheexperiment.Theexperimentwasmadeattheterminaloflargecylindeicalscatteringchamber,inwhichsixtelescopesareusedtomeasurechargedparticlesemittedintherearandmiddle
简介:Operationof200kVHeavyIonAccelerator¥ZhaoLimin;WangJingyan;FuBaojinandXiaoRongqingIn1996200kVheavyionacceleratorwasoperatedfor...
简介:ImprovementofRadiologicalProtectionat600kVCockroft-WaltonGenerator¥ZhengHuazhi;ZhuHongbin;WangGuiling;LiZongqiang;SongWenJie;...
简介:Inrecentyears,heavyionbeamshavebeenrecognizedasaneffectiveandefficientphysicalmutagenduetotheircapacitytoinducemutationswithhighfrequencyandbroadspectrum.Nowadays,itisnotsodifficulttoproducevariousmutantsinplants.However,tominetheresponsiblemutatedgeneshasbeenanimportantchallenge.Formutationisolation,map-basedcloningisoneofthemajortraditionalwaystoisolatethemutantgenesthatcontroltraitsofinterestinforwardgeneticsstudies.However,theprocessofmap-basedcloningisusuallycomplicatedandtime-consuming.
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:MOS型功率场效应管具有大的脉冲开关电流(数十安培)、较高的漏源电压(达千伏)、小的导通内阻(欧姆量级)和较快的导通时间(数纳秒)。由于其输入输出电容大,故用其制作的脉冲源抗脉冲电磁干扰能力较强,也因此它的开关速度较慢。采用过驱动能提高MOS型功率场效应管的开关速度。就是使栅极驱动脉冲波形的前沿很快且上冲大大超过额定的栅源驱动电压。为此,在研制过程中,解决了用多个场效应管串、并联组合,形成具有纳秒级陡峭前沿的大电流开关;用多个脉冲变压器并联,对大电流开关输出的信号进行放大和成形;用脉冲变压器的技术解决了大功率脉冲功率合成等关键技术,采用稳定的开关器件等技术和工艺,解决低压电路抗高速高压强电干扰。实现了用固体器件—场效应管,替代国外氢闸流管部分用途的功能。
简介:Fourkeyreactions,12C(,)13O,13C(,n)16O,25Mg(p,)26Aland19F(p,)16O,willbestudiedforthefirsttimewithinorneartheastrophysicalrelevantenergyregions(Gamowwindow)atJinpingUndergroundlaboratoryforNuclearAstrophysics(JUNA)[1],whichwilltaketheadvantageoftheultra-lowbackgroundofChinaJinPingundergroundLaboratory(CJPL),highcurrentacceleratorbasedonECRsourceandahighlysensitivedetectionsystem.