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The two dimensions hole-doped t-t '-J-U model was studied based on the Gutzwiller approach and the renormalized mean-field theory.The phase diagrams of gossamer superconductors and the effects of the next-nearestneighbor hopping(t ') on superconductivity and antiferromagnetism based on the t-t '-J-U model were investigated.The results show that the qualitative feature of the phase diagrams in the t-t '-J-U model is the same as in the case of the t-J-U model.The antiferromagnetic order coexists with the d-wave superconductivity(dSC) in the underdoped region below the doping δ≈ 0.1 and is enhanced by the t '.The dSC order is slightly suppressed by t ' in the underdoped region and greatly enhanced in the overdoped region.The dSC order is pushed to a larger doping region and the coexistence region of the AF and dSC extends to higher doping. 相似文献
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调整圆弓形散射元参数实现低群速和低色散的慢光效应 总被引:1,自引:0,他引:1
圆弓形散射元具有各向异性和多个可控自由度的特点。采用平面波展开方法,通过长轴微调、短轴变化和散射元转动几个方面,优化了光子晶体线性缺陷波导结构,实现了高群折射率和低色散的慢光效应并进行了模拟。结果表明,通过调整长轴和短轴变化,可以获得带宽在10.1~1.1nm,折射率为36.5~287.5的低色散慢光;通过散射元转动,可以获得带宽在11.4~0.8nm、折射率为45.5~293.7的低色散慢光。上述方法还可以获得超低色散和接近零色散效果的慢光。由此表明,选择合适的散射元和调整散射元参数,可以有效地实现高群折射率和低色散的慢光效应。 相似文献
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A state-observer based full-state asymptotic trajectory control (OFSTC) method
requiring a scalar state is presented to asymptotically drive all the states of
chaotic systems to arbitrary desired trajectories. It is no surprise that OFSTC can
obtain good tracking performance as desired due to using a state-observer.
Significantly OFSTC requires only a scalar state of chaotic systems. A sinusoidal
wave and two chaotic variables were taken as illustrative tracking trajectories to
validate that using OFSTC can make all the states of a unified chaotic system track
the desired trajectories with high tracking accuracy and in a finite time. It is
noted that this is the first time that the state-observer of chaotic systems is
designed on the basis of Kharitonov's Theorem. 相似文献
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自组装方法与三维光子晶体制作 总被引:1,自引:0,他引:1
光子晶体,特别是三维光子晶体,可能成为信息处理和通信等领域的新型功能材料.光子晶体的制作方法可分为"自上而下"的物理方法和"自下而上"的化学自组装方法.化学自组装方法是制作三维光子晶体最为经济有效的方法.本文在阐述自组装方法的种类、一般过程、优点和不足等内容的基础上,分别分析和总结了带有各种功能缺陷的三维光子晶体的制作,这些缺陷主要包括线缺陷、面缺陷和点缺陷.从研究中可以看出,化学自组装方法通常需要结合其他方法才能实现缺陷的嵌入.近些年,三维光子晶体制作在材料选取、结构设计和方法改进等方面都有一些最新进展,本文对此进行了较为详尽的评述,并对我们课题组的研究进行了总结.最后对光子晶体的研究和制作方向进行了展望. 相似文献
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作为未来能源储存和转换装置的理想选择, 直接甲醇燃料电池具有能量密度高、携带方便以及环境友好等特点. 直接甲醇燃料电池欲实现商业化关键在于如何降低其催化剂成本, 构建高效稳定催化层, 尤其是阳极催化层. 由于非Pt催化剂对于甲醇催化氧化效率太低, 远远达不到商业化应用的要求, 因此对于Pt基改性催化剂的研究具有更重要的现实意义. 对于催化剂而言, 其微观电子结构以及能级密度分布很大程度上决定着催化剂的本征催化活性. 因此通过对其宏观特性的调控以改变Pt的微观结构, 是提高Pt基催化剂催化活性的有力方向. 本文着重从催化剂的组成、形貌和粒度等方面就近几年对Pt基催化剂的改性研究进行了综述, 并对其改性机理进行了相关讨论. 相似文献
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