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超晶格外延生长的条件依赖于表面能和晶格参数的匹配。Thecondition of superlattice layer growth depends on the surface free energy and thelattice misfit.

对双层亚铁磁超晶格的能谱进行理论研究。Theoretical studies for the energy spectra of double-layer ferrimagnetic superlattice were carried out.

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除超晶格的主衍射峰外,还观察到一级和二级卫星峰。The first and second order satellite peaks around the main reflection appear in the superlattice rocking curve.

文中还比较了准周期超晶格与周期超晶格两者的晶格比热。We also give a comparison of the lattice capacity of aperiodic superlattice with that of periodic superlattice.

针对介电超晶格结构的特殊极化问题,自行研制了极化设备。Aiming at the polarization problem of dielectric superlattice field, we developed poling equipment by ourselves.

实验上已经发现这类聚合物在不同的条件下可以组装成蘑菇状、条带、超点阵等结构。In experiments, it has been found that such block copolymers can assemble into mushroom, strip, superlattice structures.

在线性驰豫应变假设下给出了应变超晶格纵向原子间距的几何模型。A model of linear strain relaxation is proposed to obtain the interatomic longitudinal spacings of the strained superlattice.

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超晶格涂层是纳米尺度下两种不同层以超晶格周期层间交替形成的多层结构,层间厚度在5—10纳米。The superlattice coatings are an alternate multilayer structure under nanometer scale. The period thickness is 5-10 nanometer.

研究了直流电场和交流电场的作用下超晶格带间极化及太赫兹发射。Intraband polarization and terahertz emission of the semiconductor superlattice in combined dc and ac electric field are studied.

半导体超晶格和量子阱材料是用现代薄膜生长技术制成的一种新型的人造材料。Superlattice and quantum well materials of semiconductor are new-style synthetic materials made in modern film growth techniques.

光致发光测试分析表明,超晶格有很好的发光性能,并发现存在黄带发光。Photoluminescence test results show that the superlattice has preferable luminescence property and a yellow luminescence is found.

并从超晶格的对称性出发讨论了反铁磁-反铁磁超晶格和铁磁-铁磁超晶格之间的异同。The similarities and differences between the magnetic properties of AFAFS and that of ferro-ferromagnetic superlattice are discussed.

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讨论了用俄歇深度剖面分布作超晶格结构分析的特点及其局限性。The characteristics of Auger depth profile as a method for superlattice structure analysis, as well as its limitations, are discussed.

半导体超晶格材料的研究和发展,把半导体光电子器件的研究和发展推进到一个崭新的阶段。Semiconductor optoelectronic devices have been forged up into a wholly new stage by the research and development of semiconductor superlattice materials.

对单外延层结构材料、量子阱结构材料、含超晶格结构材料等,分别应用动力学理论和运动学理论作了对比分析。We have analyzed the single layer material, quantum well material and material comprise of superlattice by using kinematics and dynamics in a comparative way.

引入正弦平方势来描述掺杂超晶格由于交替掺杂引起的导带周期性调制,并提出了一种获得光学双稳态的新概念。The sine-squared potential is introduced to describe the periodic modulation of the conductive band of the doping superlattice formed by the alternative doping.

半导体超晶格的研究是凝聚态物理学中一个极其活跃的前沿和半导体科学技术发展史上一颗璀璨的明珠。Semiconductor superlattice is a active forward position in condensed state physics and a bright pearl in development history of semiconductor science technology.

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半导体超晶格研究是凝聚态物理学中一个极其活跃的前沿和半导体科学技术发展史上一颗璀璨的明珠。Semiconductor superlattice is an active forward position in condensed state physics and a bright pearl in development history of semiconductor science technology.

数值计算结果表明自旋轨道耦合使磁超晶格的能带发生了自旋劈裂并使电子在输运过程中发生自旋进动。As for the 2DEG with spin-orbit coupling, we firstly investigate the ballistic transport of electrons in the magnetic superlattice with both Rashba and Dresselhaus couplings.

总结了分子组装技术及超晶格研究的历史,介绍了分子组装技术制备超晶格的几种方法。The history of studies on molecule assembly technique and superlattice is summarized. Several methods of preparing superlattices by molecule assembly technique are introduced.