Karina E. Avila, Ph.D.

Affiliations: 
2014 Physics and Astronomy (Arts and Sciences) Ohio University, Athens, OH, United States 
Area:
Condensed Matter Physics, Low Temperature Physics
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"Karina Avila"

Parents

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Horacio Emilio Castillo grad student 2014 Ohio University
 (Dynamical Heterogeneity in Granular Fluids and Structural Glasses.)
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Publications

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Avila KE, Küchemann S, Alabd Alhafez I, et al. (2020) An atomistic study of shear-band formation during cutting of metallic glasses Journal of Applied Physics. 127: 115101
Avila KE, Vardanyan VH, Alhafez IA, et al. (2020) Applicability of cutting theory to nanocutting of metallic glasses: Atomistic simulation Journal of Non-Crystalline Solids. 550: 120363
Avila KE, Küchemann S, Alabd Alhafez I, et al. (2019) Shear-Transformation Zone Activation during Loading and Unloading in Nanoindentation of Metallic Glasses. Materials (Basel, Switzerland). 12
Avila KE, Küchemann S, Alabd Alhafez I, et al. (2019) Nanoscratching of metallic glasses – An atomistic study Tribology International. 139: 1-11
Avila KE, Küchemann S, Urbassek HM. (2019) Stucture and size of the plastic zone formed during nanoindentation of a metallic glass Journal of Non-Crystalline Solids. 523: 119593
Avila KE, Castillo HE, Vollmayr-Lee K, et al. (2016) Slow and long-ranged dynamical heterogeneities in dissipative fluids. Soft Matter
Avila KE, Castillo HE, Fiege A, et al. (2014) Strong dynamical heterogeneity and universal scaling in driven granular fluids. Physical Review Letters. 113: 025701
Krisponeit JO, Pitikaris S, Avila KE, et al. (2014) Crossover from random three-dimensional avalanches to correlated nano shear bands in metallic glasses. Nature Communications. 5: 3616
Avila KE, Castillo HE, Parsaeian A. (2013) Fluctuations in the time variable and dynamical heterogeneity in glass-forming systems. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 88: 042311
Avila KE, Castillo HE, Parsaeian A. (2011) Mapping dynamical heterogeneity in structural glasses to correlated fluctuations of the time variables. Physical Review Letters. 107: 265702
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