电子振荡

  • 网络electronic oscillation;electron oscillation
电子振荡电子振荡
  1. 指出开关的周期性减幅振荡是由于外电路的自激振荡和开关的转移电子振荡共同作用引起的。

    It is shown that the periodicity and weakening surge is caused by the interaction between the self-excitation of the resonant circuit and transferred electron oscillation of the switch .

  2. 在基础研究和关键技术方面、一系列新概念、新方法和新技术(如腔的Q突变及转镜调Q、行波放大、铼系离子的利用、自由电子振荡辐射等)纷纷提出并获得实施,其中不少具有独创性。

    In the basic research and key technologies , a series of new concepts , new methods and new technologies ( such as mutation and cavity Q-to-Gt , traveling wave amplification , Re-use system , free electron oscillations radiation , etc. ) have been put forward and implemented , many of which are unique .

  3. 本工作采用电子振荡线路模型对人体弹射过载耐力进行研究。

    In this paper electric circuit model was developed for experimental approach to study the human endurance to ejection .

  4. 电晕放电频率的15-25千赫完成高效率能量转移作为在电子振荡之间的差距电极。

    Corona discharge at frequencies of15-25 kHz accomplishes high efficiency energy transfer as electrons oscillate in the gap between the electrodes .

  5. 本文报导用电子振荡信号形成参考光栅,基于电信号拍频原理产生等高线条纹的光电结合型莫尔轮廓术。

    Reference grating formed by electronic oscillating signal and photoelectric conjunction Moire contouring of isohypse fringe based on electronic signal beat freguency principle are reported in the paper .

  6. 本文提出两种结构的具有环形阳极的马鞍场电子振荡微电离规(以下简称鞍场规),它其于可以产生电子路径,因而产生有效的气相电离的静电马鞍场约束的基础上。

    A new gauge described in this paper is based on the electrostatic saddle field confinement which is capable of producing long electron paths and consequently efficient gas phase ionization .

  7. 超晶格电子Bloch振荡过程中的能量转化与守恒

    The Energy Transformation and Conservation of the Superlattice Electrons in the Course of the Bloch Oscillation

  8. SPP是由金属一电介质界面支持的表面波。它是自由空间中的电磁波和金属表面附近电子等离子体振荡相耦合的结果。

    SPPs , which are supported by metal-dielectric interfaces , are electromagnetic waves in the free space coupled to electron plasma oscillations in the metal surfaces .

  9. 利用高能电子衍射振荡研究MBE异质材料生长工艺。优化了AlGaAs/InGaAs/GaAs材料生长工艺。

    Using the RHEED to study the MBE heterostructure material growth technologies , the AlGaAs / InGaAs / GaAs material growth technologies are optimized .

  10. 电子网络振荡与稳定的基波分析法

    Fundamental Wave Analysis of Oscillation and Stability for Electronic Networks

  11. 一类加保护的电子张弛振荡电路的行为特性

    Characteristics of an electronic relaxation oscillator with over-voltage protection

  12. 相对论效应对大振幅电子等离子体振荡破裂影响的数值模拟

    Vlasov simulation of the relativistic effect on the breaking of large amplitude plasma waves

  13. 如果等离子体频率与高功率微波频率相接近,则会产生共振效应,此时等离子体电子的振荡的幅值会大幅度提高,更容易扰乱电路的工作状态。

    Results show that under certain parameter conditions the threshold for damaging the electronic circuits decreases with the decrease of the frequency of the high-power microwave .

  14. 阐述了腋臭治疗仪的电子线路振荡过程、自动功率调节、自适应频率振荡和单线输出的工作原理,并对治疗仪的使用方法作了说明。

    The working principle on vibratory process of electronic circuit , automatic power adjustment , self-adapting frequency vibration and single wire output of axillary odour therapy is presented .

  15. 第一次讨论了超强超短激光与部分离化等离子体相互作用中,束缚电子的振荡辐射和电离问题。

    In this paper , the problem of surge radiation and ionization of bound electron in the interaction of ultra-short laser pulse and partial ionized plasma was studied for the first time .

  16. 电磁孤立子的电磁频率大约为未扰动电子等离子体振荡频率的二分之一左右,孤立子内电磁场的电场具有半周期结构,相应电磁场的磁场以及静电场则具有一个完整的周期结构。

    The electromagnetic frequency of the solitons is about one_half of the unperturbed electron plasma frequency . The transverse electric , magnetic and electrostatic fields have half_ , one_ and one_cycle structure in space , respectively .

  17. Si衬底上分子束外延Ge,Si时的反射式高能电子衍射强度振荡观察

    RHEED intensity oscillations in the process of molecular beam epitaxy growth of Ge and Si on Si substrates

  18. 单电子晶体管电导振荡及其解释

    Conductance Oscillation of the Single Electron Transistor and Its Explanation

  19. 通过对电子管高频振荡线路的分析和对导磁体感应器的试验,制作了合适的高频导磁体感应器。

    Suitable high frequency magnetic conductive inductor was made through analyzing the high frequency vibrating circuit of electron tube and doing an experiment of magnetic conductive inductor .

  20. 研究发现,该增长率与电子的径向振荡运动量的傅里叶展开式中的相应的谐振项的系数成正比,而与展开式中的其它非谐振项无关。

    It is found out that the linear growth rate is proportional to the n-th Fourier expanding coefficients of the radial motion parameters of the oscillating electrons .

  21. 表面等离子体激元是外部电磁场与金属(或金属化合物)中自由电子的集体振荡相互耦合产生的沿金属/电介质界面传播的电磁波。

    Surface plasmons , the external electromagnetic field coupling with electron collective oscillations of metal ( or metallic compound ), is an electromagnetic wave propagating along a metal / dielectric interface .

  22. 半绝缘GaAs光电导开关体内热电子的光电导振荡特性

    Characteristics of photoconductivity oscillation in semi-insulating GaAs photoconductive semiconductor switches

  23. 声光可调滤光片作为电热原子吸收光谱仪波长选择器的研究半绝缘GaAs光电导开关体内热电子的光电导振荡特性

    Studies on AOTF as the Wavelength Selector for ETV AAS Characteristics of photoconductivity oscillation in semi-insulating GaAs photoconductive semiconductor switches

  24. Siδ掺杂Al_xGa_(1&x)As/GaAs异质结二维电子气的SdH振荡研究

    Study of SDH oscillations of 2-D electron gas in Si δ - doped alxga_ ( 1-x ) as / gaas heterojunction

  25. 讨论了超晶格电子无阻尼Bloch振荡过程中的能量转化与守恒,并对其机制以及负电阻效应给以定性解释。

    The energy transformation and conservation of the superlattice electrons in the course of the Bloch oscillation without damping are discussed and the mechanism is given .

  26. GaAs(110)衬底上生长GaAs外延层时,不同生长条件下存在单层和双层两种生长模式,对应反射高能电子衍射RHEED强度振荡呈现出单双周期的变化。

    When the GaAs epitaxial layer grows on the GaAs ( 110 ) substrate , there are two growth modes ( monolayer-by-monolayer and bilayer-by-bilayer ) under different conditions that correspond to monolayer and bilayer RHEED ( Reflection High Energy Electron Diffraction ) oscillations .

  27. 自由电子激光放大器频谱振荡现象的研究

    Studies of frequency spectrum oscillating phenomenon of free electron laser amplifier

  28. 窄禁带稀磁半导体二维电子气的磁阻振荡研究

    Magnetoresistance oscillation of two-dimensional electrons gas in narrow gap dilute magnetic semiconductor

  29. 磁场下量子点中二电子系统的自旋振荡

    Spin State Oscillations in a Two-electron Quantum Dot under a Magnetic Field

  30. 电子压力计时钟振荡频率随地层温度的变化而变化。

    The clock vibrating frequency of electronic gauge changes from formation temperature .