13,691 research outputs found

    Portable, high intensity isotopic neutron source provides increased experimental accuracy

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    Small portable, high intensity isotopic neutron source combines twelve curium-americium beryllium sources. This high intensity of neutrons, with a flux which slowly decreases at a known rate, provides for increased experimental accuracy

    Chromophores in Photomorphogenesis

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    Two-Loop Bethe Logarithms

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    We calculate the two-loop Bethe logarithm correction to atomic energy levels in hydrogen-like systems. The two-loop Bethe logarithm is a low-energy quantum electrodynamic (QED) effect involving multiple summations over virtual excited atomic states. Although much smaller in absolute magnitude than the well-known one-loop Bethe logarithm, the two-loop analog is quite significant when compared to the current experimental accuracy of the 1S-2S transition: it contributes -8.19 and -0.84 kHz for the 1S and the 2S state, respectively. The two-loop Bethe logarithm has been the largest unknown correction to the hydrogen Lamb shift to date. Together with the ongoing measurement of the proton charge radius at the Paul Scherrer Institute its calculation will bring theoretical and experimental accuracy for the Lamb shift in atomic hydrogen to the level of 10^(-7).Comment: 4 pages, RevTe

    Modellversuche mit "Schersegeln" bei Tauwerknetzen

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    Lamb Shift of 3P and 4P states and the determination of α\alpha

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    The fine structure interval of P states in hydrogenlike systems can be determined theoretically with high precision, because the energy levels of P states are only slightly influenced by the structure of the nucleus. Therefore a measurement of the fine structure may serve as an excellent test of QED in bound systems or alternatively as a means of determining the fine structure constant α\alpha with very high precision. In this paper an improved analytic calculation of higher-order binding corrections to the one-loop self energy of 3P and 4P states in hydrogen-like systems with low nuclear charge number ZZ is presented. A comparison of the analytic results to the extrapolated numerical data for high ZZ ions serves as an independent test of the analytic evaluation. New theoretical values for the Lamb shift of the P states and for the fine structure splittings are given.Comment: 33 pages, LaTeX, 4 tables, 4 figure

    Versuchsfischerei mit Stellnetzen in der Nordsee

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    Apparatus for fabrication of americium- beryllium neutron sources prevents capsule contamination

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    Modified gloved enclosure is used to fill a capsule with a mixture of americium and beryllium radioactive powders to seal weld the opening, and to test it for leaks. It contains a horizontal partition, vortex mixer, mounting press, welder, test vessel, and radiation shielding to prevent surface contamination

    La dualidad y la agregación de categorías sociales

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    La "dualidad" es una concepción del enlace micro-macro que implica que elementos correspondientes a dos niveles diferentes de la estructura (tales como personas y grupos, o -como en los datos que analizamos- identidades y prácticas) se co-constituyen mutuamente. Presentamos un algoritmo para la agregación de categorías sociales que son "duales" entre sí. Nuestro algoritmo es aplicable al estudio de datos en tablas de contingencia. Aplicamos nuestro algoritmo en un estudio de la construcción conjunta de identidades sociales (incluyendo etiquetas raciales y étnicas) y prácticas educativas en un contexto universitario."Duality" is a conception of micro-macro linkage that implies that elements at each of two different levels of structure (such as persons and groups, or-as in the data we analyze-identities and practices) co-constitute one another. We present an algorithm for the aggregation of social categories that are "dual" to each other. Our algorithm is applicable to the study of data in contingency tables. We apply our algorithm in a study of the joint construction of social identities (including racial and ethnic labels) and educational practices in a university context

    Coordinate-space approach to the bound-electron self-energy: Self-Energy screening calculation

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    The self-energy screening correction is evaluated in a model in which the effect of the screening electron is represented as a first-order perturbation of the self energy by an effective potential. The effective potential is the Coulomb potential of the spherically averaged charge density of the screening electron. We evaluate the energy shift due to a 1s1/21s_{1/2}, 2s1/22s_{1/2}, 2p1/22p_{1/2}, or 2p3/22p_{3/2} electron screening a 1s1/21s_{1/2}, 2s1/22s_{1/2}, 2p1/22p_{1/2}, or 2p3/22p_{3/2} electron, for nuclear charge Z in the range 5Z925 \le Z\le 92. A detailed comparison with other calculations is made.Comment: 54 pages, 10 figures, 4 table
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