55,368 research outputs found

    Tungsten thermal neutron dosimeter

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    Tungsten-185 activity, which is produced by neutron activation of tungsten-184, determines thermal neutron flux. Radiochemical separation methods and counting techniques for irradiated tungsten provide accurate determination of the radiation exposure

    Integrating multiple representations: fighting asthma

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    This paper seeks to engage debates about integrating pluralisms regarding multiple forms/representations and how they might function smoothly if they are closely aligned. This paper offers, narrative poetry with an artistic impression aimed at seeing how these might interact with each other. Like poetry, visual images are unique and can evoke particular kinds of emotional and visceral responses. By offering narrative poetry together with an artistic representation it is not meant to de-value the importance of either, but it is aimed at seeing how these arts-based methods and creative analytical practices might unite as a narrative to offer knew ways of ‘knowing’ and ‘seeing

    How carbon vacancies can affect the properties of group IV color centers in diamond: A study of thermodynamics and kinetics

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    Recently there has been much interest in using Group IV elements from the Periodic Table to fabricate and study XVV color centers in diamond where X = Si, Ge, Sn, or Pb and VV is a carbon vacancy. These Group IV color centers have a number of interesting spin and optical properties which could potentially make them better candidates than NVV^- centers for important applications in quantum computing and quantum information processing. Unfortunately, the very same ion implantation process that is required to create these XVV color centers in diamond necessarily also produces many carbon vacancies (VCV_{\rm C}) which can form complexes with these color centers (VCV_{\rm C}-XVV) that can dramatically affect the properties of the isolated XVV color centers. The main focus of this work is to use density-functional theory (DFT) to study the thermodynamics and kinetics of the formation of these VCV_{\rm C}-XVV complexes and to suggest experimental ways to impede this process such as varying the Fermi level of the host diamond material through chemical doping or applying an external electrical bias. We also include a discussion of how the simple presence of many VCV_{\rm C} can negatively impact the spin coherence times (T2T_2) of Group IV color centers through the presence of acoustic phonons.Comment: 19 pages, 7 figure

    Numerical investigation of the Earth's rotation during a complete precession cycle

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    A theory for the long-term rotational motion of the quasi-rigid Earth was constructed by numerical integration. The theory spans 72,000 years centered about 1968 A.D., and provides accurate rotational and positional data for the Earth in the recent past and the near future. The physical model is termed dynamically consistent because developments for the active forces and torques are truncated based solely on their magnitudes regardless of their origin. The model includes all appropriate forces and torques due to the geopotential and tidal effects as well as lunisolar and planetary contributions. The elastic and inelastic deformations due to tidal action were too small to affect the mass properties of the Earth at the truncation level of the model. However, long-term dissipative effects of the tidal forces and torques were not negligible. These considerations gave the model its quasi-rigid characterization. The numerical output provided both rotational and orbital-element data. The data were fitted throughout the 72,000-year range using Chebyshev polynomial series
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