论文标题
使用波导连接的高速计算过程的振幅控制电磁脉冲切换
Amplitude controlled electromagnetic pulse switching using waveguide junctions for high-speed computing processes
论文作者
论文摘要
使用基于波浪的设备执行计算任务正在成为一种开创性的范式,可以为下一代有效的模拟和数字计算系统打开新的机会。信号切换和路由的决策过程对于计算是基本的,因为它可以将信息从一个系统中的一个(或单个)块转移到系统中。在这里,我们提出并演示了一种设计基于脉冲开关设备的技术,用于计算基本决策过程。在我们的技术中,我们从多个通道中编码信息,这些信息是横向电磁(TEM)的脉冲,这些脉冲的振幅和极性通过建模为简单传输线的互连的平行板波导传播。提出了对我们技术的深入描述,显示了如何通过正确利用通过波导连接的多个脉冲的线性分裂和叠加来设计信息的切换和路由。为了证明我们的计算技术潜力,我们开发了两个设备:一个比较器,可以计算两个实数数字和脉冲主管之间的最大值,从而利用了波导连接的互惠,以创建传统和门的相似但不同的性能(通过我们的模拟线性模拟其性能)。这些发现可能为基于电磁脉冲的计算系统打开新的途径和可能性。
Performing computational tasks with wave-based devices is becoming a groundbreaking paradigm that can open new opportunities for the next generation of efficient analogue and digital computing systems. Decision-making processes for switching and routing of signal is fundamental for computing as it enables the transfer of information from one to many (or single) blocks within a system. Here, we propose and demonstrate a technique for the design of pulse-based switching devices for the computing of fundamental decision-making processes. In our technique, we encode information from multiple channels as transverse electromagnetic (TEM) pulses of varying amplitudes and polarities propagating through interconnected parallel plate waveguides modelled as simple transmission lines. An in-depth description of our technique is presented showing how switching and routing of information can be engineered by correctly exploiting the linear splitting and superposition of multiple pulses traveling through waveguide junctions. To demonstrate the potential of our technique for computing, we develop two devices: a comparator which can calculate the largest value between two real-valued numbers and a pulse director which exploits the reciprocity of waveguide junctions to create a similar yet different performance of a traditional AND gate (emulating its performance via our analogue linear system). These findings may open new pathways and possibilities for high-speed electromagnetic pulse-based computing systems.