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M I Heggie

Showing results (1-10 of 8) with videos related to

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Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|August 10, 2016
The Stone-Wales transformation: from fullerenes to graphite, from radiation damage to heat capacityM I Heggie, G L Haffenden, C D Latham, et al.
Physical Review Letters|March 16, 2007
First-principles simulations of boron diffusion in graphiteI Suarez-Martinez, A A El-Barbary, G Savini, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|March 9, 2013
The contribution made by lattice vacancies to the Wigner effect in radiation-damaged graphiteC D Latham, M I Heggie, M Alatalo, et al.
Physical Review Letters|August 9, 2003
Metastable Frenkel pair defect in graphite: source of Wigner energy?C P Ewels, R H Telling, A A El-Barbary, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|July 24, 2015
On the validity of empirical potentials for simulating radiation damage in graphite: a benchmarkC D Latham, A J McKenna, T P Trevethan, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|February 10, 2017
Interlayer vacancy defects in AA-stacked bilayer graphene: density functional theory predictionsA Vuong, T Trevethan, C D Latham, et al.
Physical Review Letters|September 17, 2013
Extended interplanar linking in graphite formed from vacancy aggregatesT Trevethan, P Dyulgerova, C D Latham, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|July 23, 2011
Muonium chemistry and spin dynamics in sulphur, modelling interstitial hydrogenS F J Cox, J S Lord, I McKenzie, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|August 10, 2016
The Stone-Wales transformation: from fullerenes to graphite, from radiation damage to heat capacityM I Heggie, G L Haffenden, C D Latham, et al.
Physical Review Letters|March 16, 2007
First-principles simulations of boron diffusion in graphiteI Suarez-Martinez, A A El-Barbary, G Savini, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|March 9, 2013
The contribution made by lattice vacancies to the Wigner effect in radiation-damaged graphiteC D Latham, M I Heggie, M Alatalo, et al.
Physical Review Letters|August 9, 2003
Metastable Frenkel pair defect in graphite: source of Wigner energy?C P Ewels, R H Telling, A A El-Barbary, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|July 24, 2015
On the validity of empirical potentials for simulating radiation damage in graphite: a benchmarkC D Latham, A J McKenna, T P Trevethan, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|February 10, 2017
Interlayer vacancy defects in AA-stacked bilayer graphene: density functional theory predictionsA Vuong, T Trevethan, C D Latham, et al.
Physical Review Letters|September 17, 2013
Extended interplanar linking in graphite formed from vacancy aggregatesT Trevethan, P Dyulgerova, C D Latham, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal|July 23, 2011
Muonium chemistry and spin dynamics in sulphur, modelling interstitial hydrogenS F J Cox, J S Lord, I McKenzie, et al.
Pageof 1