Publications

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Gai H, Voth GA. First-principles Molecular Dynamics Study of Surface Vibrations and Vibrational Mode Coupling on the H/Si(111)1 x 1 Surface. The Journal of Chemical Physics. 1994 ;101:1734-1737.
Gai H, Voth GA. Vibrational Energy Relaxation Dynamics of Si–H Stretching Modes on the H/Si(111)11 Surface. J. Chem. Phys. 1993 ;99:740-743.
Gai H, Voth GA. A Computer Simulation Method for Studying the Ablation of Polymer Surfaces by Ultraviolet Laser Radiation. Journal of Applied Physics. 1992 ;71:1415-1420.
Gebremichael Y, Ayton GS, Voth GA. Mesoscopic Modeling of Bacterial Flagellar Microhydrodynamics. Biophys J. 2006 ;91:3640-52.
Gebremichael Y, Chu J-W, Voth GA. Intrinsic Bending and Structural Rearrangement of Tubulin Dimer: Molecular Dynamics Simulations and Coarse-grained Analysis. Biophys. J. 2008 ;95:2487-2499.
Geva E, Jang S, Voth GA. Quantum Rate Theory: A Path Integral Centroid Perspective. In: Yip S Encyclopedia of Materials Modeling: Vol. I, Fundamental Models and Methods. Encyclopedia of Materials Modeling: Vol. I, Fundamental Models and Methods. ; 2005.
Geva E, Shi Q, Voth GA. Quantum Mechanical Reaction Rate Constants from Centroid Molecular Dynamics Simulations. J. Chem. Phys. 2001 ;115:9209-9222.
Grafmüller A, Voth GA. Intrinsic Bending of Microtubule Protofilaments. Structure. 2011 ;19:409–417.
Grafmuller A, Noya EG, Voth GA. Nucleotide-dependent Lateral and Longitudinal Interactions in Microtubules. J. Mol. Biol. 2013 .
Grime JMA, Dama JF, Ganser-Pornillos BK, Woodward CL, Jensen GJ, Yeager MJ, Voth GA. Coarse-grained Simulation Reveals Key Features of HIV-1 Capsid Self-Assembly. Nat. Comm. 2016 ;7(1156):1-11.
Grime JMA, Voth GA. Highly Scalable and Memory Efficient Ultra-coarse-grained Molecular Dynamics Simulations. J. Chem. Theor. Comp. 2014 ;10:423-431.
Grime JMA, Voth GA. Early Stages of the HIV-1 Capsid Protein Lattice Formation. Biophys. J. 2012 ;103:1774-1783.
Guttenberg N, Dama JF, Saunders MG, Voth GA, Weare J, Dinner AR. Minimizing Memory as an Objective for Coarse-Graining. J. Chem. Phys. 2013 ;138.