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1.
利用基于密度泛函理论(DFT),采用赝势平面波方法和广义梯度近似法(GGA)研究了闪锌矿ZB结构和盐岩RS结构GaP的基态电子结构、光学性质,根据能带理论初步研究GaP基态能带结构、总态密度(DOS)和分波态密度(PDOS),并计算出吸收系数,反射率,复介电函数,复折射率及能量损失函数.还计算了闪锌矿结构的GaP的各向异性.  相似文献   

2.
用密度泛函理论(DFT)的B3L YP方法,在6-31G*水平上,对(GaP)n,(GaP)n 和(GaP)n-(n=1~6)团簇的几何结构、红外光谱和热力学稳定性及电子态进行了研究.得到了(GaP)n,(GaP)n 和(GaP)n-(n=1~6)团簇的基态结构.结果表明:团簇的电荷状态对簇合物的结构有影响;在(GaP)n,(GaP)n 和(GaP)n-(n=1~6)团簇中,n=3,5团簇的基态结构较稳定.  相似文献   

3.
报道了三光束飞秒激光干涉在GaP和ZnSe晶体表面诱导二维复合纳米-微米周期结构.改变三束光的偏振组合方式,可以得到不同的纳米-微米复合结构.理论计算了相应偏振条件下光场强度分布、椭偏度分布和偏振方向分布.实验和理论计算结果表明,烧蚀斑上的微米长周期结构是由三光束干涉的强度花样决定,短周期纳米结构是由光场的偏振干涉花样决定.这些研究在纳米材料制备、超高密度光存储以及材料特性周期性调制等方面有很大的应用前景.  相似文献   

4.
张冬  江炳熙  林秀华 《发光学报》1986,7(2):161-170
本文研究了在4.2K—147K温度范围内GaP:(Bi,N)晶体的光致发光光谱的精细结构,积分强度及其随温度的变化,并将它们与GaP:Bi,GaP:N光谱进行比较。首次发现在GaP:(Bi,N)晶体中激发能量从孤立N中心和NNi对(i≥3)中心到Bi中心的转移,增大了Bi束缚激子态的浓度,使Bi发射带增强。  相似文献   

5.
本文中,对吸附于纳米磷化镓(GaP)粉体表面的碱性品红拉曼光谱进行了研究。通过将吸附碱性品红与纯碱性品红晶体样品的拉曼光谱进行对比、分析可知,碱性品红在纳米GaP粉体表面发生了化学吸附。在吸附碱性品红样品的拉曼光谱中,位于1200~1320cm-1范围内的光谱特征表明可能有新的化学键(P-O-C+或Ga-O-C+)形成。碱性品红分子的中央碳正离子(C+)与GaP表面具有孤对电子的氧原子形成配位键。红外光谱结果表明,氧原子与纳米GaP粉体表面的磷原子或镓原子键合,以P-O,Ga-O或P-O-Ga形式存在于GaP表面。碱性品红分子的呼吸振动,N-苯环伸缩振动,以及苯环C-C伸缩振动散射强度与纯碱性品红晶体样品相比皆有所增强。N-苯环伸缩振动散射强度增加意味着N原子是除C+离子以外的另一个可以与GaP表面发生化学作用的活性中心,这种化学作用是由N原子与GaP表面存在共轭效应造成的。  相似文献   

6.
李阳平  刘正堂 《物理学报》2009,58(7):5022-5028
以GaP为靶材、Ar为工作气体,采用射频磁控溅射法制备了厚层GaP膜.对沉积过程中的辉光放电等离子体进行了发射光谱诊断,发现只有ArⅠ发射谱线.研究了工艺参数对发射谱线强度的影响规律,并在此基础上通过同时改变射频功率、Ar气流量及工作气压,使ArⅠ发射谱线强度保持相同.发现通过增大射频功率、减小工作气压而保持ArⅠ发射谱线强度不变可以提高GaP膜的沉积速率,并使GaP膜的沉积工艺参数得到优化.在优化后的工艺参数下制备出了符合化学计量比、红外透过性能好的厚层GaP膜. 关键词: GaP薄膜 射频磁控溅射 等离子体发射光谱 红外透射  相似文献   

7.
用开管系统,液相外延法在N—型GaP衬底上生长了P型GaP层,锌通过汽相加入。在锌—镓—GaP溶液是理想溶液,以及1100℃时锌的分布系数是0.072并与锌的浓度无关的假设下,计算了外延层中锌的浓度,结果跟实验值符合的很好。用开管系统的液相外延法能重复地控制锌的浓度。在SSD GaP薄片上用一次液相外延法重复生长出了高效率的发红光的结,至今得到的最高量子效率达10.1%。  相似文献   

8.
夏涛 《广西物理》2011,(1):25-27
采用基于密度泛函理论(Density Functional Theory)的第一性原理计算了GaP(001)面吸附硫原子后的表面结构和电子结构。计算表明,在Ga和P截止的GaP(001)-(1×2)表面吸附两个硫原子后,会形成(1×1)的重构表面,硫原子吸附在桥位置(HB)。电子结构的计算显示,吸附硫原子后,GaP带隙中的表面态密度(Density of States)明显减少了,这表明在GaP(001)表面吸附硫原子后达到了钝化的效果。  相似文献   

9.
The GaP-based dilute nitride direct band gap material Ga(NAsP) is gaining importance due to the monolithic integra- tion of laser diodes on Si microprocessors. The major advantage of this newly proposed laser material system is the small lattice mismatch between GaP and Si. However, the large threshold current density of these promising laser diodes on Si substrates shows that the carrier leakage plays an important role in Ga(NAsP)/GaP QW lasers. Therefore, it is necessary to investigate the band alignment in this laser material system. In this paper, we present a theoretical investigation to optimize the band alignment of type-I direct band gap GaNxAsyP1-x-y/GaP QWs on GaP substrates. We examine the effect of nitrogen (N) concentration on the band offset ratios and band offset energies. We also provide a comparison of the band alignment of type-I direct band gap GaNxAsyP1-x-y/GaP QWs with that of the GaNxAsyP1-x-y/Al2Ga1-2P QWs on GaP substrates. Our theoretical calculations indicate that the incorporations of N into the well and AI into the barrier improve the band alignment compared to that of the GaAsP/GaP QW laser heterostructures.  相似文献   

10.
C,N, O原子在金属V中扩散行为的第一性原理计算   总被引:2,自引:0,他引:2       下载免费PDF全文
杨彪  王丽阁  易勇  王恩泽  彭丽霞 《物理学报》2015,64(2):26602-026602
基于密度泛函理论, 采用第一性原理计算方法研究了C, N, O原子在金属V中的扩散行为. 首先, 讨论了C, N, O原子在V体心立方晶格中的间隙占位情况, 分析了其在间隙位置与V晶格的相互作用, 并探究了这种相互作用对金属V电子结构的影响. 研究结果表明: C, N, O原子在V的八面体间隙位置更为稳定, 并且C, N, O原子的2p电子与V的3d电子之间有比较强的成键作用; C, N, O原子的扩散势垒分别为0.89, 1.26, 0.98 eV, 并得出了其扩散系数表达式; 最后, 通过阿仑尼乌斯关系图对比了三者在V中扩散系数的大小, 并计算出体系温度在500–1100 K之间时其在V中的扩散系数, 计算结果与实验值基本符合.  相似文献   

11.
立方相β-GaN纳米晶的气相化学反应制备研究   总被引:1,自引:0,他引:1       下载免费PDF全文
在氮气氛中,以GaP纳米晶为原料,在相对较低的反应温度下,通过N-P取代的气相化学反应 制备立方相β-GaN纳米晶.这是由于GaP纳米晶具有较大的比表面积和表面众多的空位键,使 之具有较高的反应活性造成的.不同升温速率造成不同的化学反应机理,从而生成不同形貌 的β-GaN纳米晶材料. 关键词: 氮化镓 立方相 纳米晶  相似文献   

12.
吴正龙  余金中 《发光学报》1998,19(2):109-116
利用X射线光电子能谱(XPS)深度剖析方法对气体源分子束外延(GS-MBE)生长的GaP/Si异质结构进行了详细的分析.其结果表明:(1)外延层内Ga、P光电子峰与GaP相相符,且组份分布均匀,为正化学比GaP.(2)在不同富PH3流量条件下生长的样品,其表面富P量稍有不同,而GaP外延层内的测试结果相同.界面也未见有P的富集.(3)XPS剖析至GaP/Si界面附近,随外延层界面向衬底过渡,Si2p光电子峰向高结合能方向移动,且其结合能高于原衬底p型Si,接近于n型Si.但Ga、P光电子峰未发现有明显能移.(4)在XPS检测限内,外延层内和界面都未见有C、O等沾污.这一研究表明:无污染的本底超高真空、相对过剩的富3生长环境、成功的Si衬底清洗方法等措施保证了GS-MBE生长出正化学比GaP/Si外延异质结构.  相似文献   

13.
The electronic structure and optical gain of InAsPN/GaP(N) quantum dots (QDs) are investigated in the framework of the effective-mass envelope function theory. The strain distribution is calculated using the valence force field (VFF) method. With GaP barrier, for smaller InAsPN QDs, the minimum transition energy may occur at a lower phosphorous (P) composition, but for larger QDs, the transition energy increases as P composition increases due to the increased bandgap of alloy QDs. When the nitrogen (N) composition increases, the transition energy decreases due to the stronger repulsion between the conduction band (CB) and the N resonant band, and the transition matrix element (TME) is more affected by the transition energy rather than N–CB mixing. To obtain laser materials with a lattice constant comparable to Si, we incorporated 2% of N into the GaP barrier. With this GaP0.98N0.02 barrier, the conduction band offset is reduced, so the quantum confinement is lower, resulting in a smaller transition energy and longer wavelength. At the same time, the TME is reduced and the optical gain is less than those without N in the barrier at a low carrier density, but the peak gain increases faster when the carrier density increases. Finally it can surpass and reach a greater saturation optical gain than those without N in the barrier. This shows that incorporating N into GaP barriers is an effective way to achieve desirable wavelength and optical gain.  相似文献   

14.
Optical measurements on the single crystals of the pseudobinary (ZnS)?(GaP) alloy were carried out. The band gap energy decreased more rapidly with increase in GaP concentration than that reported previously. The analysis of the absorption spectra for the crystals of up to 70 mole % GaP indicated a direct transition characteristic, and that the band gap becomes nearly equal to that of pure GaP at about 30 mole % GaP. The photoluminescence spectra observed at liquid nitrogen temperature could first be resolved into three kinds of emission band with Gaussian distribution. The peak energy of these bands were found to be independent of the band gap variation. Thus the observed peak energy shift with alloy composition was attributed to the variation of the emission intensity of each band. The band gap shrinkage and the origin of the photoluminescence spectra on the basis of a molecular orbital method were discussed.  相似文献   

15.
本文提出含多个深能级响应的光电容瞬态分析方法:在不考虑各能级之间电子、空穴跃迁的条件下,可出“多指数过程分离法”,将总的瞬态过程分离为各能级上指数型瞬态过程之和.运用这一方法,对lMeV(4×1015cm-2电子辐照GaP LED进行了定态和两种注入条件的瞬态光电容测量,观察到H1、H2、H3三个空穴能级(0.51、0.75、1.15eV)和E1、E2、E3、E4四个电予能级(0.68、0.84、0.89、1.01eV),并得到各能级的光离化截面谱.外量子效率及发射谱测量结果表明;电子辐照引入的深能级(H1-H3,E1-E4)表现出无辐射复合中心的性质.  相似文献   

16.
We report the electronic band structure and optical parameters of X-Phosphides (X=B, Al,Ga,In) by first-principles technique based on a new approximation known as modified Becke-Johnson (mBJ). This potential is considered more accurate in elaborating excited states properties of insulators and semiconductors as compared to LDA and GGA. The present calculated band gaps values of BP, AlP, GaP, and InP are 1.867 eV, 2.268 eV, 2.090 eV, and 1.377 eV respectively, which are in close agreement to the experimental results. The band gap values trend in this study is as: Eg (mBJ-GGA/LDA)Eg (GGA) Eg (LDA). Optical parametric quantities (dielectric constant, refractive index, reflectivity and optical conductivity) which based on the band structure are also presented and discussed. BP, AlP, GaP, and InP have strong absorption in between the energy range 4-9eV, 4-7eV, 3-7eV, and 2-7eV respectively. Static dielectric constant, static refractive index and coefficient of reflectivity at zero frequency, within mBJ-GGA, are also calculated. BP, AlP, GaP, and InP show significant optical conductivity in the range 5.2-10eV, 4.3-8eV, 3.5-7.2eV, and 3.2-8eV respectively. The present study endorses that the said compounds can be used in opto-electronic applications, for different energy ranges.  相似文献   

17.
We report the electronic band structure and optical parameters of X-Phosphides (X=B, Al, Ga, In) by first-principles technique based on a new approximation known as modified Becke-Johnson (mBJ). This potential is considered more accurate in elaborating excited states properties of insulators and semiconductors as compared to LDA and GGA. The present calculated band gaps values of BP, AlP, GaP, and InP are 1.867 eV, 2.268 eV, 2.090 eV, and 1.377 eV respectively, which are in close agreement to the experimental results. The band gap values trend in this study is as: Eg(mBJ-GGA/LDA) > Eg(GGA) > Eg(LDA). Optical parametric quantities (dielectric constant, refractive index, reflectivity and optical conductivity) which based on the band structure are also presented and discussed. BP, AlP, GaP, and InP have strong absorption in between the energy range 4-9 eV, 4-7 eV, 3-7 eV, and 2-7 eV respectively. Static dielectric constant, static refractive index and coefficient of reflectivity at zero frequency, within mBJ-GGA, are also calculated. BP, AlP, GaP, and InP show significant optical conductivity in the range 5.2-10 eV, 4.3-8 eV, 3.5-7.2 eV, and 3.2-8 eV respectively. The present study endorses that the said compounds can be used in opto-electronic applications, for different energy ranges.  相似文献   

18.
在Koster-Slater格林函数以及中心原胞缺陷势近似的基础上第一次给出并讨论了Si,GaAs,GaP深能级波函数在Bloch空间的分布特征。并指出,对于一定能带数目的近似晶体模型,计算深能级波函数的收敛性比计算深能级能量的收敛性要快。 关键词:  相似文献   

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