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e^+e^-→q■g及Y→3g碎裂的色弦结构 被引量:1
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作者 田丽丽 谢去病 司宗国 《高能物理与核物理》 CSCD 北大核心 1993年第8期717-724,共8页
Lund模型对e^+e^-→q(?)g→3jets及(?)→3g→h′s的解释,是把Lund弦碎裂用到他们对这两系统假定的色弦结构上,本文直接从这些系统的颜色波函数出发,用QCD全面分析了它们的色弦结构,并揭示了Lund模型采用的色弦结构图象的合理与近似程度。
关键词 碎裂 夸克 胶子 强子 色弦结构
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STUDY ON RECTANGULAR WAVEGUIDE GRATING SLOW-WAVE STRUCTURE WITH COSINE-SHAPED GROOVES
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作者 Lu Zhigang Wei Yanyu Gong Yubin Wu Zhoumiao Wang Wenxiang 《Journal of Electronics(China)》 2007年第3期384-389,共6页
This paper focuses on a new rectangular waveguide grating Slow-Wave Structure (SWS) with cosine-shaped grooves and studies the propagation characteristics of the wave in the SWS. By using the approximate field-matchin... This paper focuses on a new rectangular waveguide grating Slow-Wave Structure (SWS) with cosine-shaped grooves and studies the propagation characteristics of the wave in the SWS. By using the approximate field-matching conditions,the dispersion equation and the coupling impedance of this circuit are obtained. The dispersion curves and coupling impedances of the fundamental wave are calculated and the influences of the various geometrical dimensions are discussed. The results show that the bandwidth of the cosine-shaped groove SWS is much wider than that of rectangular-shaped groove one. And reducing the groove width can broaden the frequency-band and decrease the phase-velocity,while increment of the groove-depth can also decrease phase-velocity. For above cases,the coupling impedance is more than 16Ω. The present analysis will be helpful on further study and design of the RF systems used in millimeter wave Traveling Wave Tube (TWT). 展开更多
关键词 Traveling Wave Tub (TWT) Rectangular waveguide grating Cosine-shaped groove Dispersion equation Coupling impedance
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