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Anthology of the Development of Radiation Transport Tools as Applied to Single Event Effects

R. A. Reed ; R. A. Weller ; A. Akkerman ; J. Barak ; W. Culpepper ; S. Duzellier ; C. Foster ; M. Gaillardin ; G. Hubert ; T. Jordan ; I. Jun ; S. Koontz ; F. Lei ; P. McNulty ; M. H. Mendenhall ; M. Murat ; P. Nieminen ; P. O'Neill ; M. Raine ; B. Reddell ; F. Saigne ; G. Santin ; Lembit Sihver (Institutionen för teknisk fysik, Nukleär teknik) ; H. H. K. Tang ; P. R. Truscott ; F. Wrobel
Ieee Transactions on Nuclear Science (0018-9499). Vol. 60 (2013), 3, p. 1876-1911.
[Artikel, refereegranskad vetenskaplig]

This anthology contains contributions from eleven different groups, each developing and/or applying Monte Carlo-based radiation transport tools to simulate a variety of effects that result from energy transferred to a semiconductor material by a single particle event. The topics span from basic mechanisms for single-particle induced failures to applied tasks like developing websites to predict on-orbit single event failure rates using Monte Carlo radiation transport tools.

Nyckelord: Monte Carlo radiation transport, single event effects



Denna post skapades 2013-08-05.
CPL Pubid: 180491

 

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Institutioner (Chalmers)

Institutionen för teknisk fysik, Nukleär teknik (2006-2015)

Ämnesområden

Elektroteknik och elektronik

Chalmers infrastruktur