Order from Disorder: Measuring Reversibility and Local Equilibration in Self-Assembly
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- Type
- dissertation
- Published
- 2012-08-01
- Cited by
- 0
- References
- 75
- OpenAlex
- https://openalex.org/W120116301
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:262243364
Keywords
Statistical physics, Measure (data warehouse), Lattice (music), Dissipation, Process (computing)
References
- Ionic colloidal crystals of oppositely charged particles
- Poucher's Perfumes, Cosmetics and Soaps
- Soft Condensed Matter
- Monte Carlo Methods in Statistical Physics
- Fluctuation-dissipation theorem in nonequilibrium steady states
- Monte Carlo cluster algorithm for fluid phase transitions in highly size-asymmetrical binary mixtures.
- Structural and dynamical features of multiple metastable glassy states in a colloidal system with competing interactions.
- Self-assembled nanoelectronic quantum computer based on the Rashba effect in quantum dots
- Fluctuation-dissipation relations and field-free algorithms for the computation of response functions.
- Diffusion Constants near the Critical Point for Time-Dependent Ising Models. I
- Avoiding unphysical kinetic traps in Monte Carlo simulations of strongly attractive particles.
- Anisotropy of building blocks and their assembly into complex structures.
- Introduction To Modern Statistical Mechanics
- Dynamic phase transition, universality, and finite-size scaling in the two-dimensional kinetic Ising model in an oscillating field.
- The impact of conformational fluctuations on self-assembly: Cooperative aggregation of archaeal chaperonin proteins
- Analyzing mechanisms and microscopic reversibility of self-assembly.
- Self-assembled crystalline semiconductor optoelectronics on glass and plastic
- Effective temperatures from the fluctuation-dissipation measurements in soft glassy materials
- Predicting the self-assembly of a model colloidal crystal
- Mechanisms of kinetic trapping in self-assembly and phase transformation.
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