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3篇 您的检索式:作者名="J.Ziegler"
    题名 作者 年代 出处 被引量
1Hg_(1-x)Cd_xTe反型层子能带结构的实验研究显示文摘本文在4.2K下测定了液相外延HgCdTe MIS结构样品的电容谱,磁阻振荡以及迴旋共振效应,并从实验测量结果,采用物理参数拟合法,确定了该样品在电量子限条件下反型层电子子能带结构,包括基态子能带能量E_o、费密能级E_F,子能带电子有效质量m~*(E_F)、m~*(E_o)、反型层平均厚度Z_i、耗尽层厚度Z_d,以及它们随子能带电子浓度N_s的变化。褚君浩 R.Sizmann F.Koch J.Ziegler H.Maier 1990Journal of Semiconductors1990,11,5:2
2Transcriptome landscape of the early Brassica napus seed显示文摘Brassica napus L.(canola) is one of the world’s most economically important oilseeds. Despite our growing knowledge of Brassica genetics, we still know little about the genes and gene regulatory networks underlying early seed development. In this work, we use laser microdissection coupled with RNA sequencing to profile gene activity of both the maternal and filial subregions of the globular seed. We find subregions of the chalazal end including the chalazal endosperm, chalazal proliferating tissue, and chalazal seed coat, have unique transcriptome profiles associated with hormone biosynthesis and polysaccharide metabolism. We confirm that the chalazal seed coat is uniquely enriched for sucrose biosynthesis and transport, and that the chalazal endosperm may function as an important regulator of the maternal region through brassinosteroid synthesis. The chalazal proliferating tissue,a poorly understood subregion, was specifically enriched in transcripts associated with megasporogenesis and trehalose biosynthesis, suggesting this ephemeral structure plays an important role in both sporophytic development and carbon nutrient balance, respectively. Finally, compartmentalization of transcription factors and their regulatory circuits has uncovered previously unknown roles for the chalazal pole in early seed development.Dylan J.Ziegler Deirdre Khan Jenna L.Kalichuk Michael G.Becker Mark F.Belmonte 2019Journal of Integrative Plant Biology2019,61,5:0
3HgCdTe共振缺陷态的电容谱研究显示文摘提出一种测量HgCdTe量子电容谱、研究共振缺陷态的方法.利用高精度差分电容测量方法,在4.2K下测量了一系列受主浓度为3×10^(16)~4×10^(17)cm^(-3)的P型HgCdTe MIS样品的C-V曲线.对浓度约10^(17)cm^(-3)的强P型Hg_0.79Cd_0.21Te体材料样品,在C-V曲线上耗尽区和反型层交界的偏压区域观察到一个附加峰,该峰起源于导带底以上45meV的一个共振缺陷态,分析表明是氧占据Hg空位的杂质缺陷态.褚君浩 R.Sizmann R.Wollrab F.Koch J.Ziegler H.Maier 1989红外研究1989,8,5:0
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