3,972 research outputs found

    The rare semi-leptonic BcB_c decays involving orbitally excited final mesons

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    The rare processes BcD(s)J()μμˉB_c\to D_{(s)J} ^{(*)}\mu\bar{\mu}, where D(s)J()D_{(s)J}^{(*)} stands for the final meson Ds0(2317)D_{s0}^*(2317), Ds1(2460,2536)D_{s1}(2460,2536),~Ds2(2573)D_{s2}^*(2573), D0(2400)D_0^*(2400), D1(2420,2430)D_{1}(2420,2430) or~D2(2460)D_{2}^*(2460), are studied within the Standard Model. The hadronic matrix elements are evaluated in the Bethe-Salpeter approach and furthermore a discussion on the gauge-invariant condition of the annihilation hadronic currents is presented. Considering the penguin, box, annihilation, color-favored cascade and color-suppressed cascade contributions, the observables dBr/dQ2\text{d}Br/\text{d}Q^2, ALPLA_{LPL}, AFBA_{FB} and PLP_L are calculated

    Two-Body Strong Decay of Z(3930) as the χc2(2P)\chi_{c2} (2P) State

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    The new particle Z(3930) found by the Belle and BaBar Collaborations through the γγDDˉ\gamma\gamma\rightarrow D\bar D process is identified to be the χc2(2P)\chi_{c2}(2P) state. Since the mass of this particle is above the DDˉ()D\bar D^{(\ast)} threshold, the OZI-allowed two-body strong decays are the main decay modes. In this paper, these strong decay modes are studied with two methods. One is the instantaneous Bethe-Salpeter method within Mandelstam formalism. The other is the combination of the 3P0^3P_0 model and the former formalism. The total decay widths are 26.3 and 27.3 MeV for the methods with or without the 3P0^3P_0 vertex, respectively. The ratio of ΓDDˉ\Gamma_{D\bar D} over ΓDDˉ\Gamma_{D\bar D^\ast} which changes along with the mass of the initial meson is also presented.Comment: 11 pages, 3 figure

    3,3,4,4-Tetra­fluoro-2,3,4,5-tetra­hydro-1,6-benzodioxocine-8-carbaldehyde

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    In the title compound, C11H8F4O3, the eight-membered dialk­oxy ring adopts a highly puckered conformation. In the crystal, mol­ecules are linked by weak C—H⋯O inter­actions

    Separability-Oriented Subclass Discriminant Analysis

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    Genome-wide transcriptome analysis of gametophyte development in Physcomitrella patens

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    <p>Abstract</p> <p>Background</p> <p>Regulation of gene expression plays a pivotal role in controlling the development of multicellular plants. To explore the molecular mechanism of plant developmental-stage transition and cell-fate determination, a genome-wide analysis was undertaken of sequential developmental time-points and individual tissue types in the model moss <it>Physcomitrella patens </it>because of the short life cycle and relative structural simplicity of this plant.</p> <p>Results</p> <p>Gene expression was analyzed by digital gene expression tag profiling of samples taken from <it>P. patens </it>protonema at 3, 14 and 24 days, and from leafy shoot tissues at 30 days, after protoplast isolation, and from 14-day-old caulonemal and chloronemal tissues. In total, 4333 genes were identified as differentially displayed. Among these genes, 4129 were developmental-stage specific and 423 were preferentially expressed in either chloronemal or caulonemal tissues. Most of the differentially displayed genes were assigned to functions in organic substance and energy metabolism or macromolecule biosynthetic and catabolic processes based on gene ontology descriptions. In addition, some regulatory genes identified as candidates might be involved in controlling the developmental-stage transition and cell differentiation, namely MYB-like, HB-8, AL3, zinc finger family proteins, bHLH superfamily, GATA superfamily, GATA and bZIP transcription factors, protein kinases, genes related to protein/amino acid methylation, and auxin, ethylene, and cytokinin signaling pathways.</p> <p>Conclusions</p> <p>These genes that show highly dynamic changes in expression during development in <it>P. patens </it>are potential targets for further functional characterization and evolutionary developmental biology studies.</p
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