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Nonlinear dielectric response in partially resonant composites with radial dielectric anisotropy

机译:具有径向介电各向异性的部分共振复合材料的非线性介电响应

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摘要

The effective nonlinear dielectric response of a dilute (or nondilute) suspension of coated cylinders is investigated. The coated cylindrical inclusions consist of nonlinear core and linear anisotropic dielectric shell. By taking into account the radial dielectric anisotropy, new partial resonant conditions are derived to be s epsilon(0)(sr) + epsilon(0)(h) = 0 or s epsilon(0)(sr) + epsilon(0)(c) = 0 (epsilon(0)(c), epsilon(0)(h) are the linear dielectric functions of the core and the host medium, while epsilon(0)(sr) and epsilon(0)(st) (s equivalent to root epsilon(0)(st)/epsilon(0)(sr)), are the radial and tangential dielectric function of the shell respectively). Under partial resonant conditions, without changing the external potential, the coated cylinders can be replaced by the solid ones with larger nonlinear susceptibility and volume fractions than those of original cylindrical cores. As a result, the effective nonlinear dielectric response chi(e) of the partially resonant systems may be greatly enhanced. Analytical results show that chi(e) is in proportional to 1/lambda(2(s+1)) (lambda is the interfacial parameter ranging from 0 to 1). Therefore, increasing dielectric anisotropy s results in further enhancement of X,. We conclude that the partially resonant composites with radially dielectric anisotropy can be served as a new kind of nonlinear dielectric materials. (c) 2006 Published by Elsevier B.V.
机译:研究了带涂层圆柱体的稀(或非稀)悬浮液的有效非线性介电响应。包覆的圆柱形夹杂物由非线性核和线性各向异性介电壳组成。通过考虑径向介电各向异性,得出新的部分共振条件为s epsilon(0)(sr)+ epsilon(0)(h)= 0或s epsilon(0)(sr)+ epsilon(0)( c)= 0(epsilon(0)(c),epsilon(0)(h)是核心和宿主介质的线性介电函数,而epsilon(0)(sr)和epsilon(0)(st)( s分别等于根epsilon(0)(st)/ epsilon(0)(sr)),分别是壳的径向和切向介电函数。在部分共振条件下,在不改变外部电势的情况下,可以用具有比原始圆柱铁芯更大的非线性磁化率和体积分数的实心圆柱代替被覆圆柱。结果,可以大大增强部分谐振系统的有效非线性介电响应chi(e)。分析结果表明,chi(e)与1 / lambda(2(s + 1))成比例(lambda是介于0到1之间的界面参数)。因此,介电常数各向异性s的增加导致X i的进一步增大。我们得出结论,具有径向介电各向异性的部分共振复合材料可以作为一种新型的非线性介电材料。 (c)2006年由Elsevier B.V.发布

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