论文标题

Nanobridge鱿鱼作为多级内存元素

Nanobridge SQUIDs as multilevel memory elements

论文作者

Chaves, Davi A. D., Nulens, Lukas, Dausy, Heleen, Raes, Bart, Yue, Donghua, Ortiz, Wilson A., Motta, Maycon, Van Bael, Margriet J., Van de Vondel, Joris

论文摘要

随着在低温温度下工作的新型计算方案的开发,超导记忆元素已成为必不可少的。在这种情况下,超导量子干扰装置(鱿鱼)是有希望的候选者,因为它们可能会捕获不同离散量的磁通量。我们证明,通过野外辅助的写作方案允许通过读取零磁场处的八个不同的涡度状态来作为多级内存操作。我们提出了一种基于单相滑动的替代机制,该机制允许在保持超导性的同时切换涡度状态。在不同涡度状态的场相关能量的条件下,这种机制为基于鱿鱼的记忆的通量控制提供了一个确定性的通道。

With the development of novel computing schemes working at cryogenic temperatures, superconducting memory elements have become essential. In this context, superconducting quantum interference devices (SQUIDs) are promising candidates, as they may trap different discrete amounts of magnetic flux. We demonstrate that a field-assisted writing scheme allows such a device to operate as a multilevel memory by the readout of eight distinct vorticity states at zero magnetic field. We present an alternative mechanism based on single phase slips which allows to switch the vorticity state while preserving superconductivity. This mechanism provides a possibly deterministic channel for flux control in SQUID-based memories, under the condition that the field-dependent energy of different vorticity states are nearby.

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