ionization power

英 [ˌaɪənaɪˈzeɪʃn ˈpaʊə(r)] 美 [ˌaɪənəˈzeɪʃn ˈpaʊər]

电离能力

化学



双语例句

  1. Effect of time-dependent ionization on properties of the ultrashort pulse propagation and optical power limiting in a two-photon absorption molecular medium multiplier traveling-wave photodiode
    含时电离对飞秒脉冲激光在强双光子吸收介质中传播特性和光限幅行为的影响
  2. FDTD computation of air ionization and breakdown caused by high power microwave
    FDTD方法分析高功率微波对大气的电离与击穿
  3. Thomson scattering is a powerful diagnostic of laser-produced plasmas because it can provide simultaneously a measurement of the electron density, electron and ion temperatures, plasma expansion velocity, degree of ionization and heat flow with relatively high resolving power.
    Thomson散射是一种主动而无干扰地对等离子体进行诊断的方法.它能够以较高的时空分辨率测量等离子体的参数,如电子与离子温度、密度以及等离子体的膨胀速度、电离程度、热流等参数。
  4. Power regulation system of China Experiment Fast Reactor ( CEFR) consists of ionization chamber, regulation amplifier, dead zone and limiter, power amplifier and stepping motor, reducer, and regulation rod.
    中国实验快堆(CEFR)功率调节系统由电离室、比较器、调节放大器、死区与限幅装置、功放驱动及电机、减速器、调节棒组成。
  5. In the multi-photon ionization experiment, the parent ion peak of time-of-flight ( TOF) was observed to become broader with increasing laser power. Briefly, this phenomenon is caused by the space-charge effect of ions.
    在分子多光子电离实验中,发现母体离子的飞行时间(TOF)质谱峰随激光强度的提高而展宽,此现象归因于离子团内离子间库仑排斥作用的空间电荷效应。
  6. Because of the low efficiency of photo ionization lots of energy are wasted, it is important to improve the efficiency of it and lower the laser power.
    大多数情况下这种光电离的效率都非常低,浪费了大量的能量。因此提高光电离的效率降低所需激光的功率在这一领域(尤其是激光分离同位素方面)显得非常迫切。
  7. In this paper the experimental results of laser multiphoton ionization of background gases ( mostly oil-vapor) in the vacuum chamber for laser produced plasma study are presented by using high power laser irradiation.
    本文报道了在高功率密度激光辐照下,激光等离子体研究用的真空室中背景气体(主要是真空系统中的油蒸气)的多光子电离的实验研究结果。
  8. Experiment results show that ionization electric field intensity, power density and ionization energy density have limited influence upon plasma transport rate in a order of magnitude in the stream or glow discharge area of corona discharge.
    实验结果表明:在电晕放电的流光或辉光放电区域,电离电场强度、注入功率密度、电离能密度等参量对等离子体输运项的影响程度仅在1个数量级内;在电离能密度达到0.4mJ。
  9. This paper presents the disciplinarian and characteristic of ionization cloud in the aerosphere under high power microwave. The frondose approach of controllable ionization cloud is also analyzed.
    本文论述了HPM大气层可控电离云的产生规律及其特性,分析了形成可控电离云的具体途径;
  10. These phenomena could be attributed to the shifting of ionization equilibrium and the decreasing of excitation power of the examined elements.
    基体干扰是由于易电离元素使待测元素在等离子体中的电离平衡移动和激发能力减弱所致。
  11. Correction of the Permittivity and Conductance in Atmosphere on Intense Ionization of High Power Microwave
    高功率微波引起强电离时大气介电常数和电导率的修正
  12. We can realize completely efficiency ionization probability under the condition of low Rabi frequencies by employing lower power and time-delayed laser pulse.
    采用两脉冲之间具有一定延迟的驱动和探测激光场,可以实现在较低Rabi频率情况下粒子的全部高效率电离。
  13. Using the gridded ionization chamber, the track length data for particles α, p and t in Ar and Kr are measured. These data are calculated using the stopping power data from the program Trim and other reference.
    用屏栅电离室对α、t和p在Ar与Kr中到达电离密度重心的径迹长度X进行了测量,并根据Trim程序和其它文献的阻止本领数据对其进行了计算。
  14. Avalanche ionization is a dominant damage mechanism of optical films if laser power density reaches to TW/ cm~ 2 level.
    激光功率密度达到太瓦级时,光学激光薄膜破坏中雪崩机制占主导地位。
  15. Physical research on ionization of high power microwave propagating in atmosphere
    高功率微波大气传输电离过程的物理研究
  16. The radiation will lead to the ionization of outer election in LD, and generate photocurrent in LD; this kind of current has no difference with the injection current, thus leading to an optical power increases.
    瞬态电离效应是辐射导致外层电子电离,并在LD中产生光电流,这种电流与电源注入电流是无差别的,因此进一步导致光功率增加。
  17. The ionization impedance of the exciting channel of plasma-column antenna was calculated based on the VSWR calculation for different applied RF power. Then an impedance matching electro circuit of this channel was designed, which made the VSWR always less than 2 for different applied power. 4.
    采用驻波比推算法测量了不同激励功率条件下等离子体激励通道电离阻抗,设计完成的激励通道匹配电路满足不同激励功率条件下驻波比小于2。