Study on electron temperature of pulsed discharge plasma 大氣脈沖放電等離子體電子溫度的研究
Time - resolved diagnosing of the electron temperature of laser - produced aluminum plasma 激光等離子體電子溫度的時(shí)間分辨診斷
The spectrum can be fitted by maxwellian distribution , the hot electron temperature given by the slope is 67kev 用maxwellian分布擬合能譜,超熱電子溫度為67kev 。
The spectrum can be fitted by maxwellian distribution , the hot electron temperature given by the slope is 85kev 能譜用maxwellian分布擬合,得到超熟電子溫度為85kev 。
The increase of luminous efficiency is a result of the decreased cell voltage and electron temperature in discharge 當(dāng)氣體放電于較低電壓的情況下,電子溫度較低并可以提高發(fā)光要率。
As our best known , this is the first experimental measurement of so high hot electron temperature at moderated intensity , pre - pulse free condition 據(jù)我們所知,這是第一次報(bào)道在10 ~ ( 16 ) w cm ~ 2 、無預(yù)脈沖條件下,實(shí)驗(yàn)測量到這么高的超熱電子溫度。
The variation with the time of the mean density of all particles , electron temperature and their space distributions in the discharge cell are calculated in this paper 使用eme模型模擬計(jì)算新型蔭罩式結(jié)構(gòu)和傳統(tǒng)的表面放電式結(jié)構(gòu),對這兩種結(jié)構(gòu)的模擬結(jié)果進(jìn)行比較分析。
From the scaling law about hot electron temperature given by vh model , the hot electron measured by experiment was reasonable , the temperature was higher than the temperature given by resonant absorption scaling law 真空吸收是產(chǎn)生高能超熱電子的主導(dǎo)過程,從真空吸收給出的超熱電子溫度定標(biāo)率來看,實(shí)驗(yàn)中測量得到的超熱電子溫度是合理的。
A co2 laser with the optimized resonator is made and to be proved by experiments . this dissertation focus on the following problems : the kinetics process of the cvl and the co2 laser , the rate equations for the laser level population , electron temperature and electron density 本文的重點(diǎn)是:闡述清楚銅蒸汽激光和二氧化碳激光的動力學(xué)過程,定量描述激光能級的粒子數(shù)速率方程、電子溫度和電子密度等速率方程
The floating potential , electron temperature , ion density and flux density are all varied with the system parameters . the identical parameters we measured in our system is as follows , the electron temperature is from 1 to 4ev , ion density is among the magnitudes of i09 - io 文中重點(diǎn)研究了ecr等離子體的特性,并對我們的系統(tǒng)進(jìn)行了langmuir探針和faraday筒測試,研究了等離子體參數(shù)隨氣壓、微波功率、偏壓、氣體種類等的變化。