论文标题

使用量子整流的热电路

Heat-based circuits using quantum rectification

论文作者

Poulsen, Kasper, Zinner, Nikolaj T.

论文摘要

随着现代计算机组件的动力消耗的增加,由于功率费用较低,因此基于热的电路与过程逻辑位有关信息效果较低。在基于热的电路中,计算是通过使用温度差通过电路通过电路进行的。利用谐波振荡器和三级量子整流器作为基础组件,我们研究了三个不同的基于热的电路:二极管的串联配置,二极管的平行配置和二极管桥梁整流器。我们证明了每个电路所需的功能,以用作标准电子组件的热类似物。此外,发现二极管桥梁整流器具有与输入偏置无关的输出偏置的一致符号,从而使输入纠正。我们的结果证明了将热电流组件组合到热电路中的理论可行性。这三个电路应使用当前的几个量子技术平台可实现。

With increased power consumption of modern computer components, heat-based circuitry has become ever more relevant due to a lower power expense to process logic bits of information. In heat-based circuits, computations are performed by driving heat currents through a circuit using a temperature difference. Utilizing harmonic oscillators and three-level quantum rectifiers as base components, we study three different heat-based circuits: a series configuration of diodes, a parallel configuration of diodes, and a diode bridge rectifier. We demonstrate the required functionality of each circuit for use as heat-based analogues of standard electronic components. Furthermore, the diode bridge rectifier is found to give consistent sign of the output bias independent of the input bias thus rectifying the input. Our results prove the theoretical feasibility of combining heat current components into heat-based circuits. The three circuits should be realizable using several of the current quantum technology platforms.

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