论文标题
基于双态的Josephson连接的无电感器的超导电路
Superconducting circuits without inductors based on bistable Josephson junctions
论文作者
论文摘要
超导体中的磁通量量化允许实施快速和节能的数字超导电路。但是,磁通量中的信息表示严重限制了其功能密度,这是一个长期存在的问题。在这里,我们介绍了一个不利用磁通量并且没有电感器的超导数字电路的概念。我们认为,对于超导电路的深度缩放,几何和动力学的使用也不是有希望的。我们方法的关键思想是利用双态约瑟夫森连接,允许在其约瑟夫森能量中代表信息。由于拟议的电路仅由约瑟夫森连接组成,因此可以称为全约瑟夫森连接(All-JJ)电路。我们提出了一种设计的方法,该方法由常规和可靠连接的电路组成。我们分析了电路功能的原理,从简单的逻辑单元和以8位并行加法器结束。在简化原理图和JJ计数的减少方面,All-JJ电路中的双态连接的利用是有希望的。
Magnetic flux quantization in superconductors allows the implementation of fast and energy-efficient digital superconducting circuits. However, the information representation in magnetic flux severely limits their functional density presenting a long-standing problem. Here we introduce a concept of superconducting digital circuits that do not utilize magnetic flux and have no inductors. We argue that neither the use of geometrical nor kinetic inductance is promising for the deep scaling of superconducting circuits. The key idea of our approach is the utilization of bistable Josephson junctions allowing the representation of information in their Josephson energy. Since the proposed circuits are composed of Josephson junctions only, they can be called all-Josephson junction (all-JJ) circuits. We present a methodology for the design of the circuits consisting of conventional and bistable junctions. We analyze the principles of the circuit functioning, ranging from simple logic cells and ending with an 8-bit parallel adder. The utilization of bistable junctions in the all-JJ circuits is promising in the aspects of simplification of schematics and the decrease of the JJ count leading to space-efficiency.