The Physics of Disorder. David Drabold, Distinguished Professor of Physics
Pressure-induced transformations
M. Durandurdu and D. A. Drabold, Ab initio simulation of first-order amorphous to amorphous phase transition in silicon, Phys. Rev. B 64 014101 (2001) .
M. Durandurdu and D. A. Drabold, Simulation of pressure-induced polyamorphism in a chalcogenide glass GeSe2, Phys. Rev. B 65 104208 (2002).
Murat Durandurdu and D. A. Drabold, First order pressure-induced polyamorphism in germanium, Phys. Rev. B 66 041201R (2002)
M. Durandurdu and D. A. Drabold, Ab initio simulation of pressure-induced low-energy excitations in amorphous silicon, Phys. Rev. B 66 155205 (2002)
M. Durandurdu and D. A. Drabold, Pressure-induced structural phase transition of paracrystalline silicon, Phys Rev B 66 205204 (2002).
M. Durandurdu and D. A. Drabold, A theoretical investigation of amorphization and crystallization in silicon phases, Phys. Rev. B 67 212101 (2003)
V. Deringer, N. Bernstein, G. Csanyi, M. Wilson, D. A. Drabold and S. R. Elliott, Structural transitions in dense disordered silicon from quantum-accurate ultra-large-scale simulations, Nature 589 59 (2021), paper here, Commentary by Paul McMillan (2021).