259
Views
26
CrossRef citations to date
0
Altmetric
Original Articles

In-situ TEM observation of transformation of dislocations from shuffle to glide sets in Si under supersaturation of interstitials

, , &
Pages 4841-4850 | Received 24 Nov 2005, Accepted 13 Apr 2006, Published online: 21 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Jing Yang, Asuka Hatano, Satoshi Izumi & Shinsuke Sakai. (2016) Reaction pathway analysis for shuffle-set 60° perfect dislocation in Si. Philosophical Magazine 96:27, pages 2902-2918.
Read now
Hiroyuki Iwata, Muneharu Kutsuna, Tomoko Okuno & Hiroyasu Saka. (2016) Temperature dependence of the stacking fault energy of glide set-dissociated dislocations in Si. Philosophical Magazine Letters 96:7, pages 265-272.
Read now
Jacques Rabier. (2013) On the core structure of dislocations and the mechanical properties of silicon. Philosophical Magazine 93:1-3, pages 162-173.
Read now
Satoshi Izumi, Hiroyuki Ohta, Chisato Takahashi, Toshiyuki Suzuki & Hiroyasu Saka. (2010) Shuffle-set dislocation nucleation in semiconductor silicon device. Philosophical Magazine Letters 90:10, pages 707-714.
Read now
L. Pizzagalli & P. Beauchamp. (2008) Dislocation motion in silicon: the shuffle-glide controversy revisited. Philosophical Magazine Letters 88:6, pages 421-427.
Read now

Articles from other publishers (20)

Xiaona Huang, Yong-Jie Hu & Qi An. (2021) Locking of Screw Dislocations in Silicon due to Core Structure Transformation. The Journal of Physical Chemistry C 125:44, pages 24710-24718.
Crossref
L. I. Fedina, A. K. Gutakovskii, V. I. Vdovin & T. S. Shamirzaev. (2021) Structural Transformations of the Dislocation Cores in Si and Their Relationship with Photoluminescence. Crystallography Reports 66:4, pages 636-643.
Crossref
Hiroshi Yamaguchi, Junichi Tatami, Tsukaho Yahagi, Hiromi Nakano, Motoyuki Iijima, Takuma Takahashi & Toshiyuki Kondo. (2020) Dislocation-controlled microscopic mechanical phenomena in single crystal silicon under bending stress at room temperature. Journal of Materials Science 55:17, pages 7359-7372.
Crossref
Kyosuke Kishida, Yasuharu Shinkai & Haruyuki Inui. (2020) Room temperature deformation of 6H–SiC single crystals investigated by micropillar compression. Acta Materialia 187, pages 19-28.
Crossref
Simen N. H. Eliassen, Jesper Friis, Inga G. Ringdalen, Normand Mousseau, Mickaël Trochet & Yanjun Li. (2019) Atomistic approach to simulate kink migration and kink-pair formation in silicon: The kinetic activation-relaxation technique. Physical Review B 100:15.
Crossref
Ichiro Yonenaga. 2019. Handbook of Photovoltaic Silicon. Handbook of Photovoltaic Silicon 541 588 .
Ichiro Yonenaga. 2019. Handbook of Photovoltaic Silicon. Handbook of Photovoltaic Silicon 1 48 .
D. Rodney, L. Ventelon, E. Clouet, L. Pizzagalli & F. Willaime. (2017) Ab initio modeling of dislocation core properties in metals and semiconductors. Acta Materialia 124, pages 633-659.
Crossref
Wentao Hu, Bin Wen, Quan Huang, Jianwei Xiao, Dongli Yu, Yanbin Wang, Zhisheng Zhao, Julong He, Zhongyuan Liu, Bo Xu & Yongjun Tian. (2017) Role of plastic deformation in tailoring ultrafine microstructure in nanotwinned diamond for enhanced hardness塑性变形在纳米孪晶金刚石微观组织超细化中的作用. Science China Materials 60:2, pages 178-185.
Crossref
L. Pizzagalli. (2015) Atomistic modeling of the dissociation of a screw dislocation in silicon. Journal of Materials Science 51:6, pages 2869-2876.
Crossref
Ichiro Yonenaga. (2015) An overview of plasticity of Si crystals governed by dislocation motion. Engineering Fracture Mechanics 147, pages 468-479.
Crossref
Z. Li & R. C. Picu. (2013) Shuffle-glide dislocation transformation in Si. Journal of Applied Physics 113:8, pages 083519.
Crossref
T. Okuno & H. Saka. (2012) Electron microscope study of dislocations introduced by deformation in a Si between 77 and 873 K. Journal of Materials Science 48:1, pages 115-124.
Crossref
S. Korte, J.S. Barnard, R.J. Stearn & W.J. Clegg. (2011) Deformation of silicon – Insights from microcompression testing at 25–500°C. International Journal of Plasticity 27:11, pages 1853-1866.
Crossref
Y Umeno, Y Shiihara & N Yoshikawa. (2011) Ideal shear strength under compression and tension in C, Si, Ge, and cubic SiC: an ab initio density functional theory study . Journal of Physics: Condensed Matter 23:38, pages 385401.
Crossref
Laurent Pizzagalli, Julien Godet, Julien Guénolé & Sandrine Brochard. (2011) Dislocation cores in silicon: new aspects from numerical simulations. Journal of Physics: Conference Series 281, pages 012002.
Crossref
Koichi Shima, Satoshi Izumi & Shinsuke Sakai. (2010) Reaction pathway analysis for dislocation nucleation from a sharp corner in silicon: Glide set versus shuffle set. Journal of Applied Physics 108:6.
Crossref
J. Rabier, L. Pizzagalli & J.L. Demenet. 2010. 47 108 .
Takahiro Namazu & Yoshitada Isono. (2009) Fatigue Life Prediction Criterion for Micro–Nanoscale Single-Crystal Silicon Structures. Journal of Microelectromechanical Systems 18:1, pages 129-137.
Crossref
J. Rabier. (2007) High‐stress plasticity and the core structures of dislocations in silicon. physica status solidi (a) 204:7, pages 2248-2255.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.