QI Li-jian, SUN Da-liang, LIU Jiang-xia, ZHANG Chang-long. Microscale Vortex Dislocation: Another Important Growth Mechanism of Gem Crystals[J]. Journal of Gems & Gemmology, 2004, 6(3): 1-7.
Citation: QI Li-jian, SUN Da-liang, LIU Jiang-xia, ZHANG Chang-long. Microscale Vortex Dislocation: Another Important Growth Mechanism of Gem Crystals[J]. Journal of Gems & Gemmology, 2004, 6(3): 1-7.

Microscale Vortex Dislocation: Another Important Growth Mechanism of Gem Crystals

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  • Received Date: July 27, 2004
  • Surface microtopography, representation and tracer of microscale vortex dislocation of hydrothermal synthetic sapphires and natural beryls are studied by using atomic force microscope and interference microscope. The research indicates that microscale vortex dislocation is another important growth mechanism of some gem crystals. It suggests that the vortex migration and crystalling phase vortex nucleation of microscale ore-forming fluid will be the another important way in which some matter in system of metallogenetic kinetics moves and exists. In this paper, the present situation and development of the research on growth mechanism of crystal are also discussed.
  • [1]
    闵乃本.探索新晶体[M].长沙:湖南科技出版社,1998.10—230.
    [2]
    张克从,张乐惠.晶体生长科学与技术(第二版)[M].北京:科学出版社,1997.57—143.
    [3]
    仲维卓,华素坤.晶体生长形态学[M].北京:科学出版社,1999.352—355.
    [4]
    王继扬.晶体生长的缺陷机制[J].物理,2001,30(6):332—339.
    [5]
    于锡玲.晶体生长机理研究的新近发展[J].中国科学基金,2002,16(4):215—218.
    [6]
    王文魁,王继扬,赵珊茸.晶体形貌学[M].武汉:中国地质大学出版社,2001.2—80.
    [7]
    郑燕青,施尔畏,李汶军.晶体生长理论研究现状与发展[J].无机材料学报,1999,14(3):321—332.
    [8]
    闵乃本.实际晶体的生长机制[J].人工晶体学报.1992,21(3):217—229.
    [9]
    闵乃本,砂川一郎,琢本胜男.晶体生长的层错机制及其动力学[J].物理学报,1988,37(5):789—795.
    [10]
    仲维卓,华素坤,施尔畏.极性晶体的结构与形貌[J].人工晶体学报,1991,20(1):822—826.
    [11]
    仲维卓,刘光照,施尔畏,等.在热液条件下晶体的生长基元与晶体形成机理[J].中国科学(B辑),1994,24(4):349—353.
    [12]
    仲维卓,许桂生,罗豪甦,等.负离子配位多面体生长基元与晶体表面结构( )[J].人工晶体学报,2001,30(3):221—226.
    [13]
    Pina C,Becker U,Risthaus P,et al.Molecular-scale mechanisms of crystal growth in barite[J].Nature,1998,(395): 483-486.
    [14]
    Sunagawa I,Tsukamoto K.Growth spirals on NaCl and KCl crystals grown from solution phase[J].Journal of Crystal Growth,1972,(15):73-78.
    [15]
    Sunagawa I,Urano A.Beryl crystals from pegmatites:morphology and mechanism of crystal growth[J].The Journal of Gemmology,1999,26(8):521-533.
    [16]
    Enckevort W J P.Contact nucleation of steps:theory and monte carlo simulation[J].Journal of Crystal Growth,2003, (259):190-207.
    [17]
    Yiting F,Mitch M C,Bruce H T.Crystal growth and morphology of substituted gadolinium gallium garnet[J].Journal of Crystal Growth,2002,(240):185-189.
    [18]
    Kunpeng Wang,Daliang Sun,Jianxiu Zhang,et al.Spiral growth mechanisms of CMTD crystals[J].Journal of Crystal Growth,2004,(261):63-69.
    [19]
    Aquilano D,Veesler S,Pierre J,et al.Polymorphic polytypic transition induced in crystals by interaction of spirals and 2D growth mechanisms[J].Journal of Crystal Growth, 2003,(247):541-550.
    [20]
    仲维卓,罗豪甦,曹虎,等.负离子配位多面体生长基元与枝蔓晶的形成[J].人工晶体学报,2002,31(3):240—244.
    [21]
    叶大年,金成伟.铸石研究[M].北京:科学出版社,1978.90—110.
    [22]
    李汶军,施尔畏,仲维卓,等.水热条件下氧化物枝蔓晶的形成[J].人工晶体学报,1999,28(1):54—57.
    [23]
    赵珊茸,王继扬,刘宏,等.晶体形貌学的新近发展[J].高技术通讯,2001,(5):108—110.
    [24]
    黄琼,赵珊茸.枝晶研究的发展现状[J].人工晶体学报,2002,31(5):486—489.
    [25]
    Jacob E B,Garik P.T he formation of patterns in Non-equilibrium growth[J].Nature,1990,(348):523-530.
    [26]
    Stanley E H.Tip splitting without interfacial tension and dentritic growth patterns arising from molecular anisotropy [J].Nature,1986,(321):663-668.
    [27]
    Yongchun Zhu,Huagui Zheng,Qing Yang,et al.Growth of dendritic cobalt nanocrystals at room temperature[J].Journal of Crystal Growth,2004,(260):427-434.
    [28]
    Ding G L,Tewari S N.Dendritic morphologies of directionally solidified single crystals along different crystallographic orientations[J].Journal of Crystal Grow th,2002,(236): 420-428.
    [29]
    Ananth R,William N G.Dendritic growth in microgravity and forced convection[J].Journal of Crystal Growth,1997, (179):263-276.
    [30]
    Lan C W,Hsu C M,L iu C C.Efficient adaptive phase field simulation of dendritic grow th in a forced flow at low super cooling[J].Journal of Crystal Growth,2002,(241):379-386.
    [31]
    Glicksman M E,Koss L T,Bushnell J C,et al.Space flight data from the isothermal dendritic growth experiment[J]. A dv Space Res,1995,16(7):181-186.
    [32]
    Dong-sheng Yu,Jian-jun Xu.Dendritic grow th with external flow:interfacial wave theory and its comparison with experiments[J].Journal of Crystal Grow th,1999,(198-199): 49-55..
    [33]
    罗豪甦,仲维卓,殷之文,等.水溶液中晶体生长台阶运动的实时观察方法[J].人工晶体学报,1994,23(1):56—61.
    [34]
    杨卫兵,孙立功,卢贵武.溶液中晶体生长动力学的MC计算机模拟研究[J].原子与分子物理学报,2003,20(3):429—433.
    [35]
    蒋建华.同步辐射X射线形貌术在晶体生长和缺陷研究中的应用[J].人工晶体学报,2000,29(2):180—187.
    [36]
    王庆武,董胜明,房昌水.快速生长的TGS晶体缺陷的X射线形貌术研究[J].人工晶体学报,1993,22(3):268—271.
    [37]
    Singh R,Samanta S B,N arlikar A V,et al.A combined optical,SEM and ST M study of growth spiralson the polytypic cadmium iodide crystals[J].Journal of Crystal Growth, 2000,(213):70-74.
    [38]
    赵珊茸,王继扬,孙大亮,等.原子力显微镜在晶体生长机理研究中的应用[J].硅酸盐通报,2001,(2):40—44.
    [39]
    Gvozdev N V,Petrova E V,Chernevich T G,et al.A tomic force microscopy of grow th and dissolution of calcium oxalate monohydrate (COM) crystals[J]. Journal of Crystal Grow th,2004,(261):539-549.
    [40]
    L and T A,Martin T.AFM investigation of step kinetics and hillock morphology of the{100}face of KDP[J].Journal of Crystal Growth,2004,(260):566-579.
    [41]
    Plomp M,Maiwa K,Van Enckevort W J P.Atomic force microscopy observations of hollow cores on the{111}and {100}faces of barium nitrate[J].Journal of Crystal Grow th, 1999,(198-199):246-252.
    [42]
    Klemenz C.Hollow cores and step-bunching effects on (001) YBCO surfaces grown by liquid-phase epitaxy[J].Journal of Crystal Growth,1998,(187):221-227.
    [43]
    陆德复.涡旋成矿作用[J].地质科学,1997,23(3):364—374.
    [44]
    朱涛.地幔动力学研究进展——地幔对流[J].地球物理学进展,2003,18(1):65—73.
    [45]
    余志豪.台风螺旋雨带——涡流Rossby波[J].气象学报,2002,64(4):502—507.
    [46]
    王绳祖,李建国,张宗淳.地幔对流的实验研究:非立柱状幔/柱和地幔涡旋[J].地震地质,2000,22(2):155—166.
    [47]
    Geim,A K,Dubonos S V,Grigorieva I V,et al.Non-quantized penetration of magnetic field in the vortex state of superconductors[J].Nature,2000,(407):55-57.
    [48]
    Tonomura A,Kasai H,Kammura O,et al.M otion of vortices in superconductors[J].Nature,1999,(397):308-309.
    [49]
    刘式达,辛国君.大气中尺度涡旋的三维螺旋结构理论[J].气象学报,2000,58(2):151—158.
    [50]
    凌国灿,熊忠民.三维尾迹型流动中的大尺度旋涡位错形成[J].中国科学(A辑),2001,31(10):915—922.
    [51]
    林上金.基流对热对流涡旋结构影响的实验结果初步分析[J].物理学报,2002,51(9):2057—2062.

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