luminescence 中文意思是什麼

luminescence 解釋
n. 名詞 【物理學】發光,發螢[冷、磷]光。
adj. 形容詞 -nescent
  1. Optically stimulated luminescence dosimetry systems

    光學受激發光劑量測定系統
  2. Research on rare earth eu, dy doped long luminescence glass

    摻雜長余輝發光玻璃的研究
  3. Luminescence is a general term for light emission, including photoluminescence, electroluminescence and others

    發光特性一般包括光致發光,電致發光及其它不同類型所導致的發光等。
  4. Synthesis and luminescence properties of reactive ternary europium complexes

    反應型三元銪配合物的合成及發光性能研究
  5. Auxiliary pressure and temperature measurements make the multifrequency phase fluorometer an ideal choice for luminescence sensor design, testing and calibration

    輔助壓力和溫度測量讓多頻相位熒光計是發光探測傳感器設計、測試和校準的理想選擇。
  6. A look at the ways animals use electromagnetism, luminescence and infrasonic as well as ultrasonic waves

    -照顧動物福利拯救被遺棄動物接收棄養動物並安排領養提供住院醫療
  7. This type of long persistent phosphor has the advantages of innocuity, no radioactivity, high luminescence, long duration and no need of electricity, so it can be regarded as high efficiency solid display material

    它無毒、無放射性、亮度高、余輝時間長、不消耗電能,是一種高效節能的固體發光顯示材料。
  8. The high - power semiconductor quantum well ( qw ) laser is a kind of luminescence device with superior performance, it has longe - lived, low threshold current density, high efficiency, high luminosity and excellent monochromatic, coherence, directionality, etc. the high - power semiconductor laser is widely applied to the fields, such as military, industrial machining, communication, information processing, medical treatment, etc. the material ' s epitaxy is the foundation of the whole laser ' s fabricating, and it has important influence on the optics and electricity performance about the laser

    大功率半導體量子阱激光器是一種性能優越的發光器件,具有壽命長、閾值電流密度低、效率高、亮度高以及良好的單色性、相干性、方向性等特點,廣泛應用於軍事、工業加工、通信及信息處理、醫療保健等領域。材料的外延生長是整個激光器器件製作的基礎,對器件的光學和電學性能有著重要的影響,生長不出優質的材料體系,獲得高性能的器件就無從談起,因此,材料的外延生長便成為了整個半導體激光器製作過程之中的重中之重。
  9. The influence of y2o2s : eu phosphors fluorescent spectra, chroma and luminescing efficiency is studied with the changing of concentration of eu34 " ion, and the suited concentration of eu3 + ion is acquired, all these provided support for the research on the yzc ^ s : eu, mg, ti long - persistent phosphors structure and luminescence performance

    研究了不同eu含量對y _ 2o _ 2s : eu熒光體光譜性能、發光效率和色度的影響,給出了最適宜的摻eu濃度,為進一步研究探討y2o2s : eu , mg , ti長余輝磷光體的基質組成和發光性能提供依據。
  10. The night side of the moon, also, under certain circumstance, shows some luminescence phenomena.

    月面的夜區在某些情況下也會顯出某種發光現象。
  11. With good light collection, about 30% of the luminescence quanta may reach the photocathode.

    在良好的光收集條件下,約30的熒光量子可以到達光陰極。
  12. The still sketchy theory of luminescence in solids and liquids cannot be discussed here in detail.

    在此不能詳細討論目前還很粗糙的固體和液體的發光理論。
  13. Fabrication and properties of white luminescence conversion leds

    的研製與特性
  14. The thing of luminescence is not sure all gold

    發光的東西未必都是黃金。
  15. Effect of flux on structure and luminescence of lamgb5o10 ce2, mn

    的結構和發光性質的影響
  16. Soon it will become a state of luminescence

    很快就會變成發光狀態。
  17. Advances in molecular luminescence analysis

    分子發光分析進展
  18. With the development of mechatronics technology, ultraviolet luminescence sensors will have more and more application and prospects

    隨著機電一體化技術的發展,紫外線傳感器必將有廣闊的應用前景。
  19. Conductive glass electrodes were modified with polyethylenimine ( pee ) and polyacrylicacid ( paa ) via electrostatic interaction ; and the electrochemical luminescence behavior of luminol on the modified electrodes was compared

    摘要通過靜電相互吸引作用對導電玻璃電極表面進行聚乙烯亞胺和聚丙烯酸分子層修飾;比較了修飾電極對中性介質中魯米諾電化學發光的影響。
  20. The activation effect of zn2 + modification, including enhancement of emission intensity, slowing of luminescence decay and increasing of quantum yields, results from the formation of zns shell outside the nanoparticles, which is passivating the surface of nanoparticles, eliminating the surface quenching centers, so as to block the nonradiative transition pathways through these kind of quenching centers

    Zn ~ ( 2 + )表面修飾在納米顆粒表面形成了zns殼層,鈍化了納米顆粒的表面,消除了表面猝滅中心,阻塞了通過表面猝滅中心進行無輻射躍遷的通道,從而使得發光強度增加,衰減變慢,量子效率提高。
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