We show that the Tile Assembly Model exhibits a strong notion of universality where the goal is to give a single tile assembly system that simulates the behavior of any other tile assembly system. We give a tile assembly system that is capable of simulating a very wide class of tile systems, including itself. Specifically, we give a tile set that simulates the assembly of any tile assembly system in a class of systems that we call emph{locally consistent}: each tile binds with exactly the strength needed to stay attached, and that there are no glue mismatches between tiles in any produced assembly. Our construction is reminiscent of the studies of emph{intrinsic universality} of cellular automata by Ollinger and others, in the sense that o...
In this paper, we prove that the three-dimensional abstract Tile Assembly Model (3DaTAM) is intrinsi...
International audienceWe prove a negative result on the power of a model of algorithmic self-assembl...
International audienceWe prove a negative result on the power of a model of algorithmic self-assembl...
We show that the Tile Assembly Model exhibits a strong notion of universality where the goal is to g...
We show that the Tile Assembly Model exhibits a strong notion of universality where the goal is to g...
We prove a negative result on the power of a model of algorithmic self-assembly for which it has bee...
We prove a negative result on the power of a model of algorithmic self-assembly for which finding ge...
We prove a negative result on the power of a model of algorithmic self-assembly for which finding ge...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
In this paper, we prove that the three-dimensional abstract Tile Assembly Model (3DaTAM) is intrinsi...
International audienceWe prove a negative result on the power of a model of algorithmic self-assembl...
International audienceWe prove a negative result on the power of a model of algorithmic self-assembl...
We show that the Tile Assembly Model exhibits a strong notion of universality where the goal is to g...
We show that the Tile Assembly Model exhibits a strong notion of universality where the goal is to g...
We prove a negative result on the power of a model of algorithmic self-assembly for which it has bee...
We prove a negative result on the power of a model of algorithmic self-assembly for which finding ge...
We prove a negative result on the power of a model of algorithmic self-assembly for which finding ge...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
We prove that the abstract Tile Assembly Model (aTAM) of nanoscale self-assembly is intrinsically un...
In this paper, we prove that the three-dimensional abstract Tile Assembly Model (3DaTAM) is intrinsi...
International audienceWe prove a negative result on the power of a model of algorithmic self-assembl...
International audienceWe prove a negative result on the power of a model of algorithmic self-assembl...