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We present a systematic light-cone QCD sum rule study of the exclusive rare radiative decay Λ b →Λγ and rare semileptonic decay Λ b →Λl + l within the framework of the standard model. Although some light-cone sum rule (LCSR) studies on these rare processes can be found in different literatures, it is necessary to reanalyze them systematically for the reason that either the baryonic distribution amplitudes are improved or different interpolating currents for the Λ b baryon may lead to quite different results. In addition, the rare process Λ b →Λγ has not yet been analyzed by LCSR with the Ioffe-type current. Taking all these reasons into account, we perform LCSR calculations of both the processes with two types of interpolating currents. Our calculations show that the choice of the interpolating current for the Λ b baryon can affect the predictions significantly, especially for the rare radiative decay process. 相似文献
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近年来,借助于高度优化的小分子荧光染料,荧光蛋白和先进的标记技术,荧光标记技术得到了极大的发展.二芳基乙烯光开关荧光染料的研究,主要通过在二芳基乙烯中引入荧光核和对芳基的结构修饰.与噻吩相比,呋喃具有更好的刚性、溶解性和可生物降解能力以及更强的荧光.因此,二呋喃乙烯可以作为荧光标记技术的小分子荧光染料.设计并制备了一种基于二氰基乙烯的二呋喃乙烯新型荧光光开关.该化合物在溶液中呈现典型的可逆光致变色性能,且以其出色的选择性、灵敏度和高对比度来实现氰根离子的荧光检测.此外,通过核磁滴定实验,解释了其对氰根离子的响应机理.由于采用呋喃替换噻吩使得该化合物拥有更强的荧光,成功应用于生物体内的荧光染料和氰根离子探针. 相似文献
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