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light emission相关的网络例句

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与 light emission 相关的网络例句 [注:此内容来源于网络,仅供参考]

As for light emission from semiconductor NWs or NTs or NCs, an accurate and efficient method is proposed to simulate light emission of an emitter in a general cylindrically multilayered nanostructure.

在一维半导体纳米结构光辐射器件方面,包括半导体纳米线、纳米管和纳米同轴线等,我们提出适用于柱坐标系下多层同轴结构光辐射的精确高效的电磁理论分析模型。

The intensity of red emission was far higher than that of the green emission due to the cross-relaxation process ~4F_(7/2+~4I_(11/2)→~4F_(9/2)+~4F_(9/2), which restrained the electron population of green emission energy level, enhanced the efficiency of red light emission remarkably, and brought about high fluorescent branding ratio of red to green.

结果表明:这三种方法得到的样品的形貌分别为无定形、球状和长柱状;同固相法合成的样品的发光性质不同,这三种方法合成的样品的发射谱均为绿光发射主导上转换光谱。

In addition,the light emission signal of single filament was obtained because spatial resolved measurement can be easily realized for the light emission signal measurement.

除此之外,研究了单个放电丝的光信号,发现光信号测量可以实现对放电过程的空间分辨测量。

The possible mechanism for the two ECL channels at the Pt electrode cathodically pre-polarized in alkaline solution is also proposed:(1) luminol anion was electroxidized to radical at 0.22V, which then reacted with the oxygen dissolved in solution and emitted light;(2) the fresh oxygen species electro- generated at 1.07V oxidized luminol anion with light emission.

同时给出了在碱性含氧溶液中预还原的铂电极上两个可能的ECL反应通道:(1)在0.22V鲁米诺阴离子氧化为鲁米诺自由基,然后与溶解氧反应而发光;(2)1.07V处析出的新鲜氧与鲁米诺阴离子反应而发光。

Therefor, the limits to explain isolatedly the individual process of light emission in microlaser only through cavity quantum electrodynamics effect can be avoided by the connecting the cavity quantum acoustics effect and the cavity quantum electrodynamics effect and dealing with the emission problems in microlaser from the overall point of view.

因此将&腔量子电动力学效应&和&腔量子声学效应&结合起来,从全局的观点处理微激光器中的发光问题,避免了单用&腔量子电动力学效应&孤立地解释微激光器中发光分过程所导致的局限性。

For example: peripherin-layer is made of nuphtheroquinon-xylenediol azide-anti-alcohol (microspectroscopic catalysical sensitivity range of up to 320 ~ 460nm), PS print, when you choose to use iodine gallium light, exposure time, simply by 20s with high pressure mercury lamp above the 30s, because although the two lamps and the spectral 300 ~ 460nm scope, but sulfonylated spetroscopy gallium light emission from 400 nm wavelength in close to the section of the distribution of light energy and light energy than much of high pressure mercury lamp, uniform is also much larger, and with this kind of formulation-peripherin-catalysical spetroscopy, emiting anastomasis sensitivity more productive.

感平层是用邻二叠氮醌型感平剂(平谱不分平感量边界为320~460nm)的PS版,晒版时若采取碘镓灯,曝平工夫只需20s把握,用矮压水银灯则给30s以上,这是因为:虽然两栽灯具的平谱成不分都在300~460nm边界边,但磺镓灯不收射的平谱洋挨近400nm波不幼段的平能量的不分布及平能量比矮压水银灯平均得众也不小得众,并且与这栽感平剂型的平谱不分平感量更为吻不分,不收平效果也更矮的原由。

By measuring current voltage characteristics and observing light emission of these diodes,electron emission feature of these diamond powder cold cathodes were investigated.

通过该结构电流电压特性的测量和发光特性的观察研究了金刚石粉末冷阴极的电子场发射性能。

By comparing the waveforms of light emission and current for the three different modes,the relationship between the waveforms of light emission and current in dielectric barrier discharge was investigated.

通过比较三种不同模式下的光信号和电流信号,研究介质阻挡放电中光信号和电流信号的关系。

The copolymers consisting blue- and green-yellow light emission have been designed and synthesized. We try to obtain white light-emission by combining the two equalized light-emission and adjust emission colors by changing the content of green-yellow light emission unit.

设计合成了由蓝光与绿-黄光发射单元组成的共聚物,并试图通过两种补偿色的发光获得白光,由改变绿-黄光发射单元的含量来调节发光颜色。

Electrochemical properties, photoluminescence and electroluminescence properties of a series of copolymer with different content are studied detailedly. The results indicated there is strong energy transfer between blue- and green-yellow light emission units, so only single blue- or green-yellow emission peak appears in the PL and EL spectra and white light-emission cannot get.

对一系列不同含量的绿-黄光链段共聚物的电化学性能、光致发光和电致发光性能进行了研究,发现蓝光链段与绿-黄光链段间由于存在强的能量转移,导致共聚物膜的光致发光和电致发光光谱只出现单一的蓝-绿光或绿-黄光,而不能复合出白光。

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