1,691 research outputs found

    Upper estimate of martingale dimension for self-similar fractals

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    We study upper estimates of the martingale dimension dmd_m of diffusion processes associated with strong local Dirichlet forms. By applying a general strategy to self-similar Dirichlet forms on self-similar fractals, we prove that dm=1d_m=1 for natural diffusions on post-critically finite self-similar sets and that dmd_m is dominated by the spectral dimension for the Brownian motion on Sierpinski carpets.Comment: 49 pages, 7 figures; minor revision with adding a referenc

    Photoinduced coherent oscillations in the one-dimensional two-orbital Hubbard model

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    We study photoinduced ultrafast coherent oscillations originating from orbital degrees of freedom in the one-dimensional two-orbital Hubbard model. By solving the time-dependent Schr\"odinger equation for the numerically exact many-electron wave function, we obtain time-dependent optical response functions. The calculated spectra show characteristic coherent oscillations that vary with the frequency of probe light. A simple analysis for the dominant oscillating components clarifies that these photoinduced oscillations are caused by the quantum interference between photogenerated states. The oscillation attributed to the Raman-active orbital excitations (orbitons) clearly appears around the charge-transfer peak.Comment: 5 pages, 5 figure

    Utilisation of Coffee Grounds for Total Mixed Ration Silage

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    In the beverage industry, wastes from coffee grounds are of particular importance given their rapid increase in recent years. Although a small part is converted into raw compost material, wastes generated from tea grounds are generally incinerated. There is increasing demand for efficient use of by-products due to economic and environmental concerns. Approximately 200,000 t of coffee grounds are produced annually in Japan. These grounds usually have high protein, fat, fibre, and nitrogen-free extract and possibly could be a source of nutrients for ruminant (Xu et al., 2004). The objectives of this study were to evaluate the fermentation characteristics of silages prepared from coffee grounds mixed with various feeds and their nutritive values with sheep

    Application of a New Inoculant “Chikuso-1” for Silage Preparation of Forage Paddy Rice

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    Forage paddy rice is currently one of the most important silage crops in Japan. In fact, the use of paddy rice culture for silage production has been steadily increasing in recent years, not only because this represents a new way towards achieving self-sufficiency in animal feed, but also because of the interest of combining crop cultivation and livestock farming as a more effective use of idle paddy fields that often remain unused. However, the preparation of quality silage from paddy rice and its long-term storage are often challenging (Cai et al., 1999, 2003). In this study, a new bacterial inoculant was developed and its application for silage preparation of forage paddy rice was examined

    Pulsed UCN production using a Doppler shifter at J-PARC

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    We have constructed a Doppler-shifter-type pulsed ultra-cold neutron (UCN) source at the Materials and Life Science Experiment Facility (MLF) of the Japan Proton Accelerator Research Complex (J-PARC). Very-cold neutrons (VCNs) with 136-m/s\mathrm{m/s} velocity in a neutron beam supplied by a pulsed neutron source are decelerated by reflection on a m=10 wide-band multilayer mirror, yielding pulsed UCN. The mirror is fixed to the tip of a 2,000-rpm rotating arm moving with 68-m/s\mathrm{m/s} velocity in the same direction as the VCN. The repetition frequency of the pulsed UCN is 8.33 Hz8.33~\mathrm{Hz} and the time width of the pulse at production is 4.4 ms4.4~\mathrm{ms}. In order to increase the UCN flux, a supermirror guide, wide-band monochromatic mirrors, focus guides, and a UCN extraction guide have been newly installed or improved. The 1 MW1~\mathrm{MW}-equivalent count rate of the output neutrons with longitudinal wavelengths longer than 58 nm58~\mathrm{nm} is 1.6×102 cps1.6 \times 10^{2}~\mathrm{cps}, while that of the true UCNs is 80 cps80~\mathrm{cps}. The spatial density at production is 1.4 UCN/cm31.4~\mathrm{UCN/cm^{3}}. This new UCN source enables us to research and develop apparatuses necessary for the investigation of the neutron electric dipole moment (nEDM).Comment: 32 pages, 15 fugures. A grammatical error was fixe
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