摻稀土光纖 的英文怎麼說

中文拼音 [chānguāngxiān]
摻稀土光纖 英文
rare earth doped fiber
  • : 摻動詞[書面語] (持; 握) hold
  • : Ⅰ形容詞1 (事物出現得少) rare; scarce; uncommon 2 (事物之間距離遠; 空隙大) sparse; scattered 3...
  • : Ⅰ名詞1 (照耀在物體上、使人能看見物體的一種物質) light; ray 2 (景物) scenery 3 (光彩; 榮譽) ...
  • : 纖形容詞(細小) fine; minute
  1. We outlined the history of optic amplifiers, analysed the advantages and disadvantages of edfa and fra, and the application area of rare earth doped tellurite glass amplification fiber

    摘要文章介紹了放大的研究歷史,分析了放大器( edfa )和拉曼放大器的優勢和劣勢,指明了雜碲酸鹽放大的應用領城。
  2. We also described the amplification mechanism of erbium doped fiber amplifier and thulium doped fiber amplifier, obtained the conclusion that rare earth doped tellurite glass amplification fiber is close to practical application in view of the current r & d of erbium doped tellurite glass amplification fiber and thulium doped tellurite glass amplification fiber

    文章介紹了鉺和銩放大放大機理,綜述了鉺碲酸鹽和銩碲酸鹽玻璃放大的研究近況,得出了雜碲酸鹽玻璃放大越來越接近實用化的結論。
  3. Rare - earth doped fiber amplifier and its research progress

    摻稀土光纖放大器研究進展
  4. Octahedral [ pbi6 ] works as network modifier and they are homogeneously dispersed in the disordered network by linking with [ ass3 / 2 ] pyramids by s - i bonds. systematical studies on these three glass systems indicate that they are all promising candidates for ir optical fiber materials. and ges2 - ga2s3 - cscl glasses are potential host glasses for re doped 1. 3 m amplifiers

    實驗結果表明:三個系統的玻璃均為較有前途的中遠紅外材料,且ges _ 2 - ga _ 2s _ 3 - cscl玻璃是潛在的離子雜1 . 3 m放大器的基質材料。
  5. Ytterbium ( yb ) - doped silica fibers have a broad - gain bandwidth ( 850 ~ 1050nm ), excellent power conversion efficiency, and a broad - absorption bandwidth ( 900 ~ 1200nm ). their ability to provide amplification over the very broad wavelength range from ~ 975nm to ~ 1200nm is expected to generate increasing interest in the near future. they offer an almost ideal gain medium for the fiber lasers and fiber amplifiers that work at the wavelength around 1 m

    鐿石英具有幾個方面的優點,如能級結構簡單,與er3 + 、 nd3 +等離子的相比,不存在對泵浦或信號的激發態吸收( esa ) ,可以有更高的雜濃度;有較寬的吸收譜( 850 ~ 1050nm ) ,可以利用多種泵浦源來設計泵浦方案;輻射譜寬( 900 ~ 1200nm ) ,激輸出波長可以有很寬的可調諧范圍。
分享友人