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1.
本文探讨了中性多缔合位点Patchy胶体粒子系统的相图及其相关问题. 在研究中,计入了分子间的硬芯Lennard-Jones势和缔合作用,进而阐明了系统的流体相(F),无规密积相(RCP)和面心立方相(FCC)之间转变的相态结构. 在体系丰富的相结构中,F-F,F-RCP及F-FCC相转变以及描述粒子间联结性的溶胶-凝胶转变相互影响,致使一些相态在不同相互作用强度时可以呈现亚稳态和稳态. 同时,本文重点阐述了缔合能量以及patch数目对体系的临界温度、临界密度、临界三相点以及溶胶-凝胶转变等的调控机制.  相似文献   

2.
罗明海  徐马记  黄其伟  李派  何云斌 《物理学报》2016,65(4):47201-047201
VO2是一种热致相变金属氧化物. 在341 K附近, VO2发生由低温绝缘体相到高温金属相的可逆转变, 同时伴随着光学、电学和磁学等性质的可逆突变, 这种独特的性质使得VO2在光电开关材料、智能玻璃、存储介质材料等领域有着广阔的应用前景. 因此, VO2金属-绝缘体可逆相变一直是人们的研究热点, 但其相变机理至今未有定论. 首先, 简要概述了VO2相变时晶体结构和能带结构的变化情况: 从晶体结构来讲, 相变前后VO2从低温时的单斜相VO2(M)转变为高温稳定的金红石相VO2(R), 在一定条件下此过程也可能伴随着亚稳态单斜相VO2(B)与四方相VO2(A)的产生; 从能带结构来看, VO2处于低温单斜相时, 其d//能带和π*能带之间存在一个禁带, 带宽约为0.7 eV, 费米能级恰好落在禁带之间, 表现出绝缘性, 而在高温金红石相时, 其费米能级落在π*能带与d//能带之间的重叠部分, 因此表现出金属导电性. 其次, 着重总结了VO2相变物理机理的研究现状. 主要包括: 电子关联驱动相变、结构驱动相变以及电子关联和结构共同驱动相变的3种理论体系以及支撑这些理论体系的实验结果. 文献报道争论的焦点在于, VO2是否是Mott绝缘体以及结构相变与MIT相变是否精确同时发生. 最后, 展望了VO2材料研究的发展方向.  相似文献   

3.
利用全相对论多组态Dirac-Fock方法系统地计算了高离化类铍离子的磁四极M2 2s21S0—2s2p3P2 (Z=10—103)自旋禁戒跃迁的能级间隔、跃迁概率和振子强度,计算中考虑了重要核的有限体积效应,Breit修正和QED修正,所得结果和最近的实验数据以及理论值进行了比较,结果表明:高原子序数的高电荷离子(Z≥70)磁四极M2自旋禁戒跃迁几乎可以和中性原子的光学允许跃迁相比拟,不仅在天体等离子体中,在ICF和MCF高温激光等离子体中,磁四极自旋禁戒跃迁和其他自旋禁戒跃迁(磁偶极、电四极)一样不容忽视,在双电子复合、不透明度、自由程等理论计算中应该考虑其影响. 关键词: 磁四极M2 能级间隔 跃迁概率 振子强度  相似文献   

4.
5.
A first-order transition is numerically found in a spherical surface model with skeletons, which are linked to each other at junctions. The shape of the triangulated surfaces is maintained by skeletons, which have a one-dimensional bending elasticity characterized by the bending rigidity b, and the surfaces have no two-dimensional bending elasticity except at the junctions. The surfaces swell and become spherical at large b and collapse and crumple at small b. These two phases are separated from each other by the first-order transition. Although both of the surfaces and the skeleton are allowed to self-intersect and, hence, phantom, our results indicate a possible phase transition in biological or artificial membranes whose shape is maintained by cytoskeletons.  相似文献   

6.
A. K. Singh 《高压研究》2013,33(1-6):336-338
Abstract

The occurrence of Bi(I) → Bi(II) transition has been examined under constant pressurization rates in the range 0.03 to 0.1GPa/(μs) by monitoring the electrical resistance of the specimen as a function of time. Such high pressurization rates have been obtained by impacting a tungsten carbide opposed anvil setup with a low velocity projectile [Rev. Sci. Instum. 60, 253 (1989)]. The time taken for the completion of the transition decreases with the increasing pressurization rate.  相似文献   

7.
C.F.S. Pinheiro 《Physica A》2012,391(4):1532-1539
The resistivity as a function of temperature for high temperature superconductors is very unusual and, despite its importance, lacks a unified theoretical explanation. It is linear with the temperature for overdoped compounds but it falls more quickly as the doping level decreases. The resistivity of underdoped cuprates increases like that of an insulator below a characteristic temperature where it shows a minimum. We show that this overall behavior can be explained by calculations using an electronic phase segregation into two main component phases with low and high electronic densities. The total resistance is calculated from the various contributions through several processes of random picking of the local resistivities and using a common statistical random resistor network approach.  相似文献   

8.
A metastable supercooled homogeneous vortex liquid state exists down to zero fluctuation temperature in systems of mutually repelling objects. The zero temperature liquid state therefore serves as a (pseudo) ‘fixed point’ controlling the properties of vortex liquid below and even around the melting point. Based on this picture, a quantitative theory of vortex melting and glass transition in Type II superconductors in the framework of Ginzburg-Landau approach is presented. The melting line location is determined and magnetization and specific heat jumps are calculated. The point-like disorder shifts the line downwards and joins the order-disorder transition line. On the other hand, the disorder induces irreversible effects via replica symmetry breaking. The irreversibility line can be calculated within the Gaussian variational method. Therefore, the generic phase diagram contains four phases divided by the irreversibility line and melting line: liquid, solid, vortex glass and Bragg glass. We compare various experimental results with the theoretical formula.  相似文献   

9.
When liquids are cooled below their melting temperature Tm, sometimes they do not solidify immediately but remain in supercooled state up to temperatures far below the melting point. Under certain conditions, they can solidify into the form of amorphous solids without crystallizing. A supercooled liquid and a amorphous solid are metastable phases, which are not completely understood in terms of structural arrangement and thermodynamic behaviour. But by far the most interesting feature is the glass transition which is the manifestation of a true thermodynamic transition and a dynamic event since a dramatic dynamic arrest intervenes. A unified theory of supercooled liquids and glass transition does not yet exist and, more specifically, the link between the sharp increase of the relaxation time and the correlation length is a question still largely open. This article presents in the most elementary manner a brief overview of this delicate issue.  相似文献   

10.
飞秒激光所致金纳米粒子析出的玻璃非线性吸收   总被引:5,自引:0,他引:5       下载免费PDF全文
依据Z-scan技术,使用波长532nm的纳秒脉冲,研究了通过聚焦的飞秒脉冲诱导并辅以热处理得到的金纳米粒子析出的玻璃的非线性吸收.观察到金纳米粒子析出的玻璃具有饱和吸收特性.根据局域场效应,对实验结果拟合,得到在接近表面等离子体共振激发情况下,金纳米粒子三阶极化率虚部分别为Imχ(3)m=57×10-7esu.玻璃样品中金纳米粒子的非线性响应主要起源于热电子贡献. 关键词: 带内跃迁 带间跃迁 热电子贡献  相似文献   

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