48,777 research outputs found

    Destruction of the Mott Insulating Ground State of Ca_2RuO_4 by a Structural Transition

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    We report a first-order phase transition at T_M=357 K in single crystal Ca_2RuO_4, an isomorph to the superconductor Sr_2RuO_4. The discontinuous decrease in electrical resistivity signals the near destruction of the Mott insulating phase and is triggered by a structural transition from the low temperature orthorhombic to a high temperature tetragonal phase. The magnetic susceptibility, which is temperature dependent but not Curie-like decreases abruptly at TM and becomes less temperature dependent. Unlike most insulator to metal transitions, the system is not magnetically ordered in either phase, though the Mott insulator phase is antiferromagnetic below T_N=110 K.Comment: Accepted for publication in Phys. Rev. B (Rapid Communications

    Achieving Effective Innovation Based On TRIZ Technological Evolution

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    Organised by: Cranfield UniversityThis paper outlines the conception of effective innovation and discusses the method to achieve it. Effective Innovation is constrained on the path of technological evolution so that the corresponding path must be detected before conceptual design of the product. The process of products technological evolution is a technical developing process that the products approach to Ideal Final Result (IFR). During the process, the sustaining innovation and disruptive innovation carry on alternately. By researching and forecasting potential techniques using TRIZ technological evolution theory, the effective innovation can be achieved finally.Mori Seiki – The Machine Tool Compan

    Control of lasing in fully chaotic open microcavities by tailoring the shape factor

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    We demonstrate experimentally that lasing in a semiconductor microstadium can be optimized by controlling its shape. Under spatially uniform optical pumping, the first lasing mode in a GaAs microstadium with large major-to-minor-axis ratio usually corresponds to a high-quality scar mode consisting of several unstable periodic orbits. Interference of waves propagating along the constituent orbits may minimize light leakage at particular major-to-minor-axis ratio. By making stadium of the optimum shape, we are able to maximize the mode quality factor and align the mode frequency to the peak of the gain spectrum, thus minimizing the lasing threshold. This work opens the door to control chaotic microcavity lasers by tailoring the shape factor

    HACCP/RMP Adoption in the New Zealand Meat Industry

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    In New Zealand, the Animal Products Act 1999 requires that all animal product primary processing businesses must have a risk management programme (RMP) based on the principles of Hazards Analysis and Critical Control Point (HACCP). However, due to market access requirements, many primary food exporters have voluntarily adopted HACCP systems for food safety management since the 1990s. This paper studies the process of HACCP/RMP adoption and the transition from voluntary HACCP to mandatory RMP in New Zealand Meat Industry. The main issues explored are plants' motivations, implementation problems, costs and benefits associated with the implementation of HACCP/RMP. The paper concludes with implications for policy design and further research.HACCP/RMP implementation, HACCP/RMP benefits and costs, New Zealand Meat Industry, Agricultural and Food Policy,

    Observing the Dark Scalar Doublet and its Impact on the Standard-Model Higgs Boson at Colliders

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    If the Standard Model of particle interactions is extended to include a second scalar doublet [H+,(H0+iA0)/2][H^{+},(H^{0}+iA^{0})/\sqrt{2}], which is odd under an unbroken Z_{2} discrete symmetry, it may be called the darkdark scalar doublet, because its lightest neutral member, say H^{0}, is one posssible component for the dark matter of the Universe. We discuss the general phenomenology of the four particles of this doublet, without assuming that H^{0} is the dominant source of dark matter. We also consider the impact of this darkdark scalar doublet on the phenomenology of the SM Higgs boson h.Comment: PRD versio

    A Nonparametric Approach to The Analysis of HACCP/RMP Implementation Process

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    In this paper we conduct an analysis of the implementation of HACCP/RMP in the NZ Meat Industry based on the data collected from our recent survey. Nonparametric methods are used to measure the association between plant characteristics such as size, age, activities, and food safety management practices and HACCP/RMP adoption motivations, implementation problems, benefits, and costs. Results give insights into the ongoing process of mandatory RMP in New Zealand.HACCP/RMP implementation, New Zealand Meat Industry, nonparametric methods, Agricultural and Food Policy, Crop Production/Industries, Environmental Economics and Policy, Farm Management, Land Economics/Use, Livestock Production/Industries, Research Methods/ Statistical Methods,

    High-temperature weak ferromagnetism on the verge of a metallic state: Impact of dilute Sr-doping on BaIrO3

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    The 5d-electron based BaIrO3 is a nonmetallic weak ferromagnet with a Curie temperature at Tc=175 K. Its largely extended orbitals generate strong electron-lattice coupling, and magnetism and electronic structure are thus critically linked to the lattice degree of freedom. Here we report results of our transport and magnetic study on slightly Sr doped BaIrO3. It is found that dilute Sr-doping drastically suppresses Tc, and instantaneously leads to a nonmetal-metal transition at high temperatures. All results highlight the instability of the ground state and the subtle relation between magnetic ordering and electron mobility. It is clear that BaIrO3 along with very few other systems represents a class of materials where the magnetic and transport properties can effectively be tuned by slight alterations in lattice parameters
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