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Degradation of the Emission Current from the Field Emitter Caused by Ion Bombardment
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作者 姚建楠 李俊涛 《Journal of Southeast University(English Edition)》 EI CAS 2002年第4期326-330,共5页
In field emission devices, the emission current sometimes degrades with the time. The mechanism of the current degradation is complicated. In this paper, a program is used to simulate the movement of the electron beam... In field emission devices, the emission current sometimes degrades with the time. The mechanism of the current degradation is complicated. In this paper, a program is used to simulate the movement of the electron beam from a field emitter. According to the current distribution and the trajectories of the primary electron beam, it is shown that the residual gas is ionized and the ion pairs are generated. The trajectories of the positive ions are simulated. With the different locations and kinetic energy of i... 展开更多
关键词 field emitter degradation of the emission current ion bombardment
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Curbing Charging Currents in Pulsed Field Emission by Prolonging Pulse Edges
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作者 Jin-Di Wei Yun-Hui Li +3 位作者 Geng-Min Zhang Jin Yang Ying-Jie Xing Wen-Sheng Zhou 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第5期137-140,共4页
In field emission under a non-dc voltage, a displacement current is inevitable due to charging the cathode–anode condenser. Under an often-used square voltage pulse, in which the voltage rises from zero to a certain ... In field emission under a non-dc voltage, a displacement current is inevitable due to charging the cathode–anode condenser. Under an often-used square voltage pulse, in which the voltage rises from zero to a certain value abruptly, the charging current in the circuit is very large at the rising and falling edges. This large charging current makes measurement of the actual emissive current from the cathode difficult, constitutes a threat to the components in the circuit and causes attenuation of the emissive current within the pulse. To alleviate these drawbacks, trapezoid voltage pulses, whose rising edges are extended dramatically in comparison with square voltage pulses, are employed to extract the field emission. Under a trapezoid voltage pulse, the charging current is clearly lowered as expected. Furthermore, the heat generated by the charging current under the trapezoid voltage pulse is much smaller than that under the square voltage pulse. Hence the emissive current does not show any attenuation within the pulse. Finally, the average emissive currents are found to decrease with the repetition frequency of the pulses. 展开更多
关键词 Curbing Charging currents in Pulsed Field emission by Prolonging Pulse Edges
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Experimental Study of Electron Emission Characteristics of a Surface Flashover Trigger in a Low Pressure Environment 被引量:1
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作者 胡上茂 姚学玲 陈景亮 《Plasma Science and Technology》 SCIE EI CAS CSCD 2010年第6期748-752,共5页
Characteristics of electron emission induced by a surface flashover trigger device in a low-pressure trigger switch were investigated. A test method to measure the emitted charges from the trigger device was developed... Characteristics of electron emission induced by a surface flashover trigger device in a low-pressure trigger switch were investigated. A test method to measure the emitted charges from the trigger device was developed, and the factors affecting the emitted charges were analyzed. The results indicated that the major emitted charges from the trigger device were induced by surface plasma generated by surface flashover occurring on the trigger dielectric material. The emitted charges and the peak emission current increased linearly with the change in the trigger voltage and bias voltage. The emitted charges collected from the anode were affected by the gap distance. However, the emitted charges were less affected by the anode diameter. Furthermore, the emitted charges and the peak emission current decreased rapidly with the increase in gas pressure in a range from 0 Pa to 100 Pa, and then remained stable or changed slightly when the increase in gas pressure up to 2400 Pa. 展开更多
关键词 emission charges electron emission emission current trigger switch surface flashover
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The leakage current mechanisms in the Schottky diode with a thin Al layer insertion between Al_(0.245)Ga_(0.755)N/GaN heterostructure and Ni/Au Schottky contact
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作者 刘芳 王涛 +6 位作者 沈波 黄森 林芳 马楠 许福军 王鹏 姚建铨 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第4期1614-1617,共4页
This paper investigates the behaviour of the reverse-bias leakage current of the Schottky diode with a thin Al inserting layer inserted between Al0.245Ga0.755N/GaN heterostructure and Ni/Au Schottky contact in the tem... This paper investigates the behaviour of the reverse-bias leakage current of the Schottky diode with a thin Al inserting layer inserted between Al0.245Ga0.755N/GaN heterostructure and Ni/Au Schottky contact in the temperature range of 25 350℃. It compares with the Schottky diode without Aluminium inserting layer. The experimental results show that in the Schottky diode with Al layer the minimum point of I-V curve drifts to the minus voltage, and with the increase of temperature increasing, the minimum point of I V curve returns the 0 point. The temperature dependence of gate-leakage currents in the novelty diode and the traditional diode are studied. The results show that the Al inserting layer introduces interface states between metal and Al0.245Ga0.755N. Aluminium reacted with oxygen formed Al2O3 insulator layer which suppresses the trap tunnelling current and the trend of thermionic field emission current. The reliability of the diode at the high temperature is improved by inserting a thin Al layer. 展开更多
关键词 gate leakage current interface states tunnelling current thermionic field emission current
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Field emission of carbon nanotube array with normal-gate cold cathode
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作者 戴剑锋 慕晓文 +2 位作者 乔宪武 陈小婷 王军红 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第5期483-487,共5页
A hexagon pitch carbon nanotube (CNT) array vertical to the normal gate of cold cathode field emission displayer (FED) is simulated by solving the Laplace equation. The calculated results show that the normal gate... A hexagon pitch carbon nanotube (CNT) array vertical to the normal gate of cold cathode field emission displayer (FED) is simulated by solving the Laplace equation. The calculated results show that the normal gate causes the electric field around the CNT tops to be concentrated and the emission electron beam becomes a column. The field enhancement factor and the emission current intensity step up greatly compared with those of the diode structure. Emission current density increases rapidly with the decrease of normal-gate aperture. The gate voltage exerts a critical influence on the emission current. 展开更多
关键词 field emission hexagon pitch carbon nanotube (CNT) array emission current density field enhancement factor
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Simulation of Secondary Electron and Backscattered Electron Emission in A6 Relativistic Magnetron Driven by Different Cathode
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作者 刘美琴 李博轮 +2 位作者 刘纯亮 Fuks MIKHAIL Edl SCHAMILOGLU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2015年第1期64-70,共7页
Prticle-in-cell(PIC) simulations demonstrated that,when the relativistic magnetron with diffraction output(MDO) is applied with a 410 kV voltage pulse,or when the relativistic magnetron with radial output is appli... Prticle-in-cell(PIC) simulations demonstrated that,when the relativistic magnetron with diffraction output(MDO) is applied with a 410 kV voltage pulse,or when the relativistic magnetron with radial output is applied with a 350 kV voltage pulse,electrons emitted from the cathode with high energy will strike the anode block wall.The emitted secondary electrons and backscattered electrons affect the interaction between electrons and RF fields induced by the operating modes,which decreases the output power in the radial output relativistic magnetron by about 15%(10%for the axial output relativistic magnetron),decreases the anode current by about 5%(5%for the axial output relativistic magnetron),and leads to a decrease of electronic efficiency by 8%(6%for the axial output relativistic magnetron).The peak value of the current formed by secondary and backscattered current equals nearly half of the amplitude of the anode current,which may help the growth of parasitic modes when the applied magnetic field is near the critical magnetic field separating neighboring modes.Thus,mode competition becomes more serious. 展开更多
关键词 secondary electron and backscattered electron emission relativistic magnetron mode competition critical magnetic field output power anode current electronic efficiency transparent cathode solid cathode
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Particle-in-Cell Simulation Study on the Floating Potential of Spacecraft in the Low Earth Orbit 被引量:2
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作者 汤道坦 杨生胜 +5 位作者 郑阔海 秦晓刚 李得天 柳青 赵呈选 杜杉杉 《Plasma Science and Technology》 SCIE EI CAS CSCD 2015年第4期288-293,共6页
In order to further understand the characteristics of the floating potential of low earth orbit spacecraft,the effects of the electron current collection area,background electron temperature,photocurrent emission,spac... In order to further understand the characteristics of the floating potential of low earth orbit spacecraft,the effects of the electron current collection area,background electron temperature,photocurrent emission,spacecraft wake,and the shape of spacecraft on spacecraft floating potential were studied here by particle-in-cell simulation in the low earth orbit.The simulation results show that the electron current collection area and background electron temperature impact on the floating potential by changing the electron current collection of spacecraft.By increasing the electron current collection area or background electron temperature,the spacecraft will float at a lower electric potential with respect to the surrounding plasma.However,the spacecraft wake affects the floating potential by increasing the ion current collected by spacecraft.The emission of the photocurrent from the spacecraft surface,which compensates for the electrons collected from background plasma,causes the floating potential to increase.The shape of the spacecraft is also an important factor influencing the floating potential. 展开更多
关键词 spacecraft floating potential PIC electron current collection area electron temperature photocurrent emission spacecraft wake spacecraft shape
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Analysis of Effects of the Arc Voltage on Arc Discharges in a Cathode Ion Source of Neutral Beam Injector
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作者 陈俞钱 胡纯栋 谢亚红 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第4期453-456,共4页
A hot cathode bucket ion source is used for the EAST(experimental advanced superconducting tokamak)neutral beam injector.The thermal electrons emitted from the surface of the cathode are extracted and accelerated by... A hot cathode bucket ion source is used for the EAST(experimental advanced superconducting tokamak)neutral beam injector.The thermal electrons emitted from the surface of the cathode are extracted and accelerated by the electric field formed by the arc voltage,which is applied between the arc chamber of the ion source and the cathode.This paper analyzes the effects of arc voltage on the arc discharge in a hot cathode high current ion source. 展开更多
关键词 high current ion source arc discharge thermal emission limited mode stability
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