90 research outputs found

    DISTO: a large acceptance multiparticle spectrometer for 1–3 GeV proton beams

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    Abstract A magnetic spectrometer system has been constructed for the study of reactions with multiple charged particles in the final state, induced by polarized proton beams of few GeV energy. The system is based on a large-gap dipole magnet, with a liquid hydrogen target and scintillating fiber tracking detectors embedded inside the magnet. Multiwire proportional chambers, plastic scintillator hodoscopes, and threshold Cherenkov detectors placed outside the magnet provide additional tracking, triggering and particle identification capabilities. The system has been applied to study exclusive hyperon as well as pseudoscalar and vector meson production reactions at bombarding energies below 3 GeV. Additionally, it has been used to monitor the proton beam polarization at Laboratoire National Saturne. The components and performance of the system are reported

    Effects of analyzer deformation in scanning x-ray interferometry

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    Lattice Strain Effects in the Measurement of the Si-Lattice Parameter by Two-Crystal Spectrometry

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    Measurement repetitions of the Si(220) lattice spacing

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    THE TAKAGI EQUATIONS IN EVALUATING THE CONTRIBUTIONS OF SOME SYSTEMATIC-ERRORS IN SCANNING LLL X-RAY INTERFEROMETERS

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    Calculation of X-ray wave fields in perfect crystals by applying Riemann's method to solve the Takagi-Taupin equations

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    Pathways through applied and computational physics

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    This book is intended for undergraduates and young researchers who wish to understand the role that different branches of physics and mathematics play in the execution of actual experiments. The unique feature of the book is that all the subjects addressed are strictly interconnected within the context of the execution of a single experiment with very high accuracy, namely the redetermination of the Avogadro constant NA, one of the fundamental physical constants. The authors illustrate how the basic laws of physics are applied to describe the behavior of the quantities involved in the measurement of NA and explain the mathematical reasoning and computational tools that have been exploited. It is emphasized that all these quantities, although pertaining to a specific experiment, are of wide and general interest. The book is organized into chapters covering the interaction of electromagnetic radiation with single crystals, linear elasticity and anisotropy, propagation of thermal energy, anti-vibration mounting systems, and data analysis and B-spline interpolation. An essential feature is the focus on the role of Mathematica, an invaluable, fully integrated software environment for handling diverse scientific and technical computations
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