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    Interpolating sequences for H∞(BH)

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    We prove that under the extended Carleson’s condition, a sequence (xn) ⊂ BH is linear interpolating for H∞(BH) for an infinite dimensional Hilbert space H. In particular, we construct the interpolating functions for each sequence and find a bound for the constant of interpolation.The author is supported by Project MTM 2011-22457 (Ministerio de Economía y Competitividad, Spain) and Project P1-1B2014-35 (Universitat Jaume I, Spain

    ABSOLUTE INFRARED INTENSITIES IN BF4BF^{-}_{4} AND BH4BH^{-}_{4}.

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    1^{1} D. L. Shull and P. N. Schatz, Abstract M5. Symposium on Molecular Structure and Spectroscopy. The Ohio State University, Columbus Ohio, June, 1961.Author Institution: Department of Chemistry, University of VirginiaThe absolute infrared intensities of the two fundamental vibrations of each of these ions have been measured in the pure sodium salts using reflection techniques on pressed pellets. In addition, the corresponding absolute intensities for BF4BF_{4} have been measured in dilute solid solutions of KBr. The results are (in units of 10310^{3} darks): pure NaBH4,A(ν3)=90,A(ν4)=17.2NaBH_{4}, A(\nu_{3}) = 90, A(\nu_{4}) = 17.2; pure NaBF4,A(ν3)=203,A(ν4)=3NaBF_{4}, A(\nu_{3}) = 203, A(\nu_{4}) = 3 (rough value); BF4BF^-_4 in KBr. A(ν3)=132,A(ν4)=2.0A(\nu_{3}) = 132, A(\nu_{4}) = 2.0. These results together with previous work1work^{1} on BH4BH^-_4 in KBr show that the absolute intensities in the pure substances tend to be substantially higher than those in solid solution. Supported by the National Science Foundation

    Evaluation and ranking of researchers--Bh Index.

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    Evaluation and ranking of every author is very crucial as it is widely used to evaluate the performance of the researcher. This article proposes a new method, called Bh-Index, to evaluate the researchers based on the publications and citations. The method is built on h-Index and only the h-core articles are taken into consideration. The method assigns value additions to those articles that receive significantly high citations in comparison to the h-Index of the researcher. It provides a wide range of values for a given h-Index and effective evaluation even for a short period. Use of Bh-Index along with the h-Index gives a powerful tool to evaluate the researchers

    ROVIBRATIONAL CHARACTERIZATION OF X2Σ+^{2}\Sigma^{+} 11^{11}BH+^{+} BY THE EXTRAPOLATION OF PHOTOSELECTED HIGH-RYDBERG SERIES IN 11^{11}BH

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    Author Institution: Department of Chemistry, Purdue University, West Lafayette, IN 47907; Department of Chemistry, University of British Columbia, 6174 University Boulevard,; Vancouver, BC, Canada V6T 1Z3Optical-optical-optical triple resonance spectroscopy of 11^{11}BH isolates high-Rydberg states that form series converging to rotational state specific ionization potentials in the vibrational levels of 11^{11}BH+^{+} from v+=0v^{+} = 0 through 44. Limits defined by a comprehensive fit of these series to state-detailed thresholds yield rovibrational constants describing the X2Σ+^{2}\Sigma^{+} state of 11^{11}BH+^{+}. The data provide a first determination of the vibration-rotation interaction parameter αe=0.4821{\alpha}_{e} = 0.4821 cm1^{-1} and a more accurate estimate of ωe=2526.58{\omega}_{e} = 2526.58 cm1^{-1} together with the higher-order anharmonic terms ωexe=61.98{\omega}_{e}x_{e} = 61.98 cm1^{-1} and ωeye=1.989{\omega}_{e}y_{e} = -1.989 cm1^{-1}. The deperturbation and global fit of series to state-detailed limits also yields a precise value of the adiabatic ionization potential of 11^{11}BH of 79120.3(1)79120.3(1) cm1^{-1}, or 9.81033(1)9.81033(1) eV.  \; High precision is afforded here by the use of graphical analysis techniques, narrow bandwidth laser systems, and an analysis of newly observed, high-principal quantum number Rydberg states that conform well with a Hund's case (d) electron-core coupling limit
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