19,828 research outputs found

    A new class of (2+1)(2+1)-d topological superconductor with Z8\mathbb{Z}_8 topological classification

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    The classification of topological states of matter depends on spatial dimension and symmetry class. For non-interacting topological insulators and superconductors the topological classification is obtained systematically and nontrivial topological insulators are classified by either integer or Z2Z_2. The classification of interacting topological states of matter is much more complicated and only special cases are understood. In this paper we study a new class of topological superconductors in (2+1)(2+1) dimensions which has time-reversal symmetry and a Z2\mathbb{Z}_2 spin conservation symmetry. We demonstrate that the superconductors in this class is classified by Z8\mathbb{Z}_8 when electron interaction is considered, while the classification is Z\mathbb{Z} without interaction.Comment: 5 pages main text and 3 pages appendix. 1 figur

    Simulation of NH3/CO2 Two-Stage Low Temperature Refrigeration System

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    An exploratory study of teachers' subjective wellbeing: understanding the links between teachers' income satisfaction, altruism, self-efficacy and work satisfaction

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    This article examines the nature of teachers’ subjective wellbeing. Drawing upon the survey evidence from a three-year mixed methods study in China, the article explores the dynamic interaction between key aspects of teachers’ subjective wellbeing: altruism and self-efficacy (psychological functioning) and work satisfaction and income satisfaction (cognitive dimension). The results show that although teachers’ judgement of the quality of life in their workplaces reflects the strengths of their altruistic values and their capacity to fulfil these values, such judgement is adversely moderated by their income satisfaction. The research adds new evidence to current debate on the quality retention of teachers

    Glassy Dynamics in a Frustrated Spin System: Role of Defects

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    In an effort to understand the glass transition, the kinetics of a spin model with frustration but no quenched randomness has been analyzed. The phenomenology of the spin model is remarkably similiar to that of structural glasses. Analysis of the model suggests that defects play a major role in dictating the dynamics as the glass transition is approached.Comment: 9 pages, 5 figures, accepted in J. Phys.: Condensed Matter, proceedings of the Trieste workshop on "Unifying Concepts in Glass Physics
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