Simulation of multiple stages in single bin active tile self-assembly
DOI10.1007/978-3-031-34034-5_11OpenAlexW4378878877MaRDI QIDQ6149128
Andrew Rodriguez, Robert T. Schweller, Tim Wylie, Sonya C. Cirlos, Timothy Gomez, Elise Grizzell
Publication date: 12 January 2024
Published in: Unconventional Computation and Natural Computation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/978-3-031-34034-5_11
Modes of computation (nondeterministic, parallel, interactive, probabilistic, etc.) (68Q10) Quantum algorithms and complexity in the theory of computing (68Q12) Other nonclassical models of computation (68Q09) Biologically inspired models of computation (DNA computing, membrane computing, etc.) (68Q07)
Cites Work
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- Staged self-assembly: nanomanufacture of arbitrary shapes with \(O(1)\) glues
- Freezing simulates non-freezing tile automata
- Optimal staged self-assembly of general shapes
- Optimal staged self-assembly of linear assemblies
- Staged self-assembly and polyomino context-free grammars
- Simulation of programmable matter systems using active tile-based self-assembly
- Verification in staged tile self-assembly
- One-Dimensional Staged Self-assembly
- Signal Passing Self-Assembly Simulates Tile Automata
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