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Asynchronous Signal Passing for Tile Self-assembly: Fuel Efficient Computation and Efficient Assembly of Shapes

机译:用于瓷砖自组装的异步信号:燃油有效的计算和高效的形状组装

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In this paper we demonstrate the power of a model of tile self-assembly based on active glues which can dynamically change state. We formulate the Signal-passing Tile Assembly Model (STAM), based on the model of Padilla, et al. [1] to be asynchronous, allowing any action of turning a glue on or off, attaching a new tile, or breaking apart an assembly to happen in any order. Within this highly generalized model we provide three new solutions to tile self-assembly problems that have been addressed within the abstract Tile Assembly Model and its variants, showing that signal passing tiles allow for substantial improvement across multiple complexity metrics. Our first result utilizes a recursive assembly process to achieve tile-type efficient assembly of linear structures, using provably fewer tile types than what is possible in standard tile assembly models. Our second system of signal-passing tiles simulates any Turing machine with high fuel efficiency by using only a constant number of tiles per computation step. Our third system assembles the discrete Sierpinski triangle, demonstrating that this pattern can be strictly self-assembled within the STAM. This result is of particular interest in that it is known that this pattern cannot self-assemble within a number of well studied tile self-assembly models. Notably, all of our constructions are at temperature 1, further demonstrating that signal-passing confers the power to bypass many restrictions found in standard tile assembly models.
机译:在本文中,我们证明了基于可以动态变化状态的活动胶水的瓷砖自组装模型的力量。我们基于Padilla等人的模型制定信号通过瓦片装配模型(STAM)。 [1]要异步,允许在或关闭胶水,附加新瓷砖,或断开组件以任何顺序发生任何动作。在这个高度广义模型中,我们为在抽象瓦片装配模型及其变体中解决了三个新的瓷砖自组装问题的新解决方案,表明信号传递瓦片允许在多个复杂度度量上进行大量改进。我们的第一件结果利用递归装配过程来实现线性结构的瓷砖型有效装配,这些磁节结构比标准瓦片组装模型中可提供的瓦片类型。我们的第二个信号通过瓦片系统通过仅使用每个计算步骤的恒定数量的块耗电来模拟具有高燃料效率的任何图灵机。我们的第三个系统组装了离散的Sierpinski三角形,表明这种模式可以在STAM中严格自动组装。该结果特别感兴趣地知道,该图案不能在许多良好研究的瓷砖自组装模型中自组装。值得注意的是,我们所有的构造都在温度下,进一步证明信号通过赋予绕过标准瓦片组装模型中发现的许多限制的力量。

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