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Design of Multi-Layer Single-Electron Information-Processing Circuit Mimicking Behavior of Bubble Film for Solving Nonlinear Problem

机译:泡泡膜求解非线性问题的多层单电子信息处理电路模拟行为的设计

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We propose a new single-electron (SE) circuit mimicking a behavior of bubble film. The SE device that can operate using individual electrons by controlling a quantum effect (Coulomb blockade) has tunnel junctions as a main component [1]. It is known that it has many advantages, including extremely low power consumption, being high integrability. However, there is a problem that an optimal information-processing way has not been established, although many applications for SE devices have been proposed up to now. As a candidate of the way, we draw inspiration from a natural phenomenon, i.e., behaviors shown in soap bubble films, that can be regarded as a form of information processing. The bubble film forms a special structure caused that the surface tension of the film has the minimum energy. From the perspective of engineering, it can be assumed to solve a certain nonlinear problem that is the shortest Steiner problem using this property. For example, when two plastic boards are prepared, placed face to face, connected each other using a few plastic pillars, immersed in the bubble liquid, and pulled up, then the bubble film shrinks depend on the placed pillars. It is known that this shrunken form of the file shows the solution of the shortest Steiner problem [2]. In this study, we aim to design a new information-processing system on the SE devices that can solve the shortest Steiner problem by mimicking the behavior of the bubble film.
机译:我们提出了一种新的单电子(SE)电路模仿泡泡膜的行为。可以通过控制量子效应(Coulomb封锁)使用单独电子操作的SE装置具有作为主要部件的隧道结。众所周知,它具有许多优点,包括极低的功耗,具有高可加工性。然而,存在尚未建立最佳信息处理方式的问题,尽管已经提出了许多用于SE设备的应用。作为方式的候选者,我们汲取了自然现象的灵感,即肥皂泡薄膜中所示的行为,可以被视为信息处理的形式。气泡膜形成特殊的结构,使得膜的表面张力具有最小能量。从工程的角度来看,可以假设使用此属性的最短施泰纳问题的某个非线性问题。例如,当制备两个塑料板时,将面朝面放置,彼此使用少量塑料柱连接,浸​​入气泡液中并拉起,然后气泡膜收缩取决于放置的柱。众所周知,该文件的缩小形式显示了最短的施坦纳问题的解决方案[2]。在这项研究中,我们的目标是通过模拟气泡膜的行为来设计可以解决最短的施坦纳问题的SE设备上的新信息处理系统。

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