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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Unconventional Josephson junction arrays for qubit devices
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Unconventional Josephson junction arrays for qubit devices

机译:量子比特设备的非常规约瑟夫森结阵列

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摘要

The presence of spontaneous currents in unconventional Josephson junctions gives rise to the possibility of using zero magnetic field magnetization states in an unconventional loop as qubit states in a Josephson quantum computing device. However, the advantage of zero field may be insufficient to overcome the problems arising in the design and fabrication of low-noise, low-dissipation, reproducible devices. On the other hand, low-T/sub c/ "flux" devices suffer the same problems though their perspectives are more promising. The solution could be an increase in the device complexity, but with the gain of an effective advantage on the external noise rejection of the system during quantum evolution. Using advanced fabrication techniques it is now possible to build Josephson junction arrays made of superconducting unconventional loops. On this basis, a new qubit device can be designed as a ring array of unconventional loops. From a theoretical point of view this device is analogous to an annular Josephson junction, but with a "built in" natural degeneracy. For their topological and energetical properties, such arrays could be excellent devices for the qubit circuitry usable as the basic building blocks for quantum computing devices. In this work, we show how some of the principles of qubit design could be implemented in such devices.
机译:非常规约瑟夫逊结中的自发电流的存在引起了使用非常规回路中的零磁场磁化状态作为约瑟夫森量子计算设备中的量子位态的可能性。然而,零场的优势可能不足以克服在设计和制造低噪声,低耗散,可再现设备中出现的问题。另一方面,尽管低T / sub c /“助焊剂”器件的前景更为广阔,但它们也遇到了同样的问题。解决的办法可能是增加设备的复杂性,但在量子演化过程中获得有效的系统外部噪声抑制优势。使用先进的制造技术,现在可以构建由超导非常规回路制成的约瑟夫森结阵列。在此基础上,可以将新的量子位设备设计为非常规循环的环形阵列。从理论上看,该装置类似于环形约瑟夫森结,但具有“内置”自然简并性。由于它们的拓扑和能量特性,此类阵列对于量子位电路而言可能是出色的设备,可用作量子计算设备的基本构建块。在这项工作中,我们展示了如何在此类设备中实现一些量子位设计的原理。

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