A modular RFSoC-based approach to interface superconducting quantum bits

R. Gebauer, N. Karcher, Mehmed Güler, O. Sander
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引用次数: 2

Abstract

Quantum computers will be a revolutionary extension of the heterogeneous computing world. They consist of many quantum bits (qubits) and require a careful design of the interface between the classical computer architecture and the quantum processor. Even single nanosecond variations of the interaction may have an influence on the quantum state. In this paper, we present the modular design of the FPGA firmware which is part of our qubit control electronics. It features so-called digital unit cells where each cell contains all the logic necessary to interact with a single superconducting qubit. The cell includes a custom-built RISC-V-based sequencer, as well as two signal generators and a signal recorder. Internal communication within the cell is handled using a modified Wishbone bus with custom 2-to-N interconnect and deterministic broadcast functionality. We furthermore provide the resource utilization of our design and demonstrate its correct operation using an actual superconducting five qubit chip.
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基于模块化rfsoc的接口超导量子比特方法
量子计算机将是异构计算世界的革命性延伸。它们由许多量子比特组成,需要仔细设计经典计算机体系结构和量子处理器之间的接口。即使是单个纳秒的相互作用变化也可能对量子态产生影响。在本文中,我们提出了FPGA固件的模块化设计,这是我们量子比特控制电子的一部分。它的特点是所谓的数字单元,其中每个单元包含与单个超导量子比特相互作用所需的所有逻辑。该单元包括一个定制的基于risc - v的测序器,以及两个信号发生器和一个信号记录器。单元内的内部通信使用改进的Wishbone总线处理,该总线具有自定义的2对n互连和确定性广播功能。我们进一步提供了我们设计的资源利用率,并使用实际的超导五量子比特芯片演示了其正确操作。
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