Rodríguez de la Fuente O, Zimmerman J A, González M A, de La Figuera J, Hamilton J C, Pai Woei Wu, Rojo J M
Departamento de Física de Materiales, Universidad Complutense, Madrid 28040, Spain.
Phys Rev Lett. 2002 Jan 21;88(3):036101. doi: 10.1103/PhysRevLett.88.036101. Epub 2002 Jan 4.
We present a combined study by scanning tunneling microscopy and atomistic simulations of the emission of dissociated dislocation loops by nanoindentation on a (001) fcc surface. The latter consist of two stacking-fault ribbons bounded by Shockley partials and a stair-rod dislocation. These dissociated loops, which intersect the surface, are shown to originate from loops of interstitial character emitted along the <110> directions and are usually located at hundreds of angstroms away from the indentation point. Simulations reproduce the nucleation and glide of these dislocation loops.
我们通过扫描隧道显微镜和原子模拟相结合的方法,研究了在(001)面心立方表面上进行纳米压痕时解离位错环的发射情况。后者由两个由肖克莱不全位错界定的堆垛层错带和一个阶梯杆位错组成。这些与表面相交的解离环被证明起源于沿<110>方向发射的间隙型环,通常位于距压痕点数百埃的位置。模拟再现了这些位错环的形核和滑移过程。