emitting electrode 中文意思是什麼

emitting electrode 解釋
發射電極
  • electrode : n. 1. 電極。2. 電焊條。adj. -less 無電極的。
  1. Important information is that the distance between metal electrode and emitting layer must be suitable. too large, difficult injection ; too small, excitons quenching. within 0 - 70ma / cm2 injection, no effect was observed

    實驗給出影響受激發射的重要信息:金屬電極距增益區距離要適當,太大,器件厚,電注入困難;太小發光激子在電極猝滅。
  2. The main work can be summed up as follows : firstly, we studied the thermal - field properties of vcsels, and analyzed the influences of current spreading, material parameters and operating conditions on the temperature distributions. secondly, we began with the electrode voltage and calculated the equipotential s distributions, compared the distributions of voltages and current densities in different depths of vcsels, and then studied the influences of the oxide - confining region with different position or thickness, and the different sizes of the gain - guided aperture and emitting window on the distributions of the injected current density, carrier concentration and temperature in the active region. thirdly, we realized the coupling of electricity, optical and thermal - fields, worked out the threshold voltage, calculated the distributions of the injected current density, carrier concentration and temperature under different offset voltages, and analyzed the impacts of temperature profile and carrier density on the refractive index, fermi levels and optical - field

    具體工作可以概括如下:首先,研究了vcsel的熱場特性,分析了電流擴展,材料參數和工作條件對于溫度分佈的影響;其次,從電極電壓入手,計算出激光器中的等勢線分佈,並對不同深度處的電壓和電流分佈進行比較,研究了高阻區的不同位置和不同厚度、限制層和出射窗口半徑的大小對電流密度、載流子濃度和溫度分佈的影響;再次,實現了電、光、熱耦合,求出了閾值電壓,計算了不同偏置電壓下的電流密度分佈、載流子濃度分佈和熱場分佈,分析了溫度和載流子濃度變化對折射率、費米能級和光場的影響;最後,給出了考慮n - dbr和雙氧化限制層時激光器中的等勢線分佈,分析了n - dbr和雙氧化限制層對vcsel電流密度、載流子濃度、溫度和光場分佈的影響。
  3. The basic organic light emitting device ( oled ) consists of a number of ultra - thin organic layers between two electrode. under low applied voltage, the recombination of carriers coming from cathode and anode can produce intense light output

    有機電致發光器件( oled )採用有機薄膜作為發光層,能夠在低驅動電壓下,產生強烈的光電效應。
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