论文标题

可扩展的微体系结构,用于有效指令驱动的信号综合和相干量子控制

A Scalable Microarchitecture for Efficient Instruction-Driven Signal Synthesis and Coherent Qubit Control

论文作者

Khammassi, Nader, Morris, Randy W., Premaratne, Shavindra, Luthi, Florian, Borjans, Felix, Suzuki, Satoshi, Flory, Robert, Ibarra, Linda Patricia Osuna, Lampert, Lester, Matsuura, Anne Y.

论文摘要

量子算法的执行需要具有专用量子指令集的量子计算机架构,该集合能够支持将工作负载转换为作用于Qubits的实际量子操作。最新的量子控制设置通常利用通用测试仪器,例如任意波形发生器(AWG)来生成有限的波形或脉冲集。这些波形在执行前进行了预先计算和存储,然后在执行过程中用于产生控制脉冲。除了其高昂的成本和有限的可伸缩性外,由于缺乏教学套装体系结构(ISA),此类工具的可编程性差。脉冲存储的内存有限最终确定受支持的量子操作的总数。在这项工作中,我们提出了一个可扩展的Qubit控制系统,该系统可以使用灵活的ISA进行有效的Qubit控制,以驱动直接的数字合成(DDS)管道,从而产生纳米秒精确的Qubit Control信号。与最先进的系统相比,设计的值控制器提供了更高的控制渠道密度,可扩展设计,更好的可编程性和更低的成本。在这项工作中,我们讨论了新的量子控制器的功能,其体系结构和指令集,并为连贯的量子控制提供了实验结果。

Execution of quantum algorithms requires a quantum computer architecture with a dedicated quantum instruction set that is capable of supporting translation of workloads into actual quantum operations acting on the qubits. State-of-the-art qubit control setups typically utilize general purpose test instruments such as arbitrary waveform generators (AWGs) to generate a limited set of waveforms or pulses. These waveforms are precomputed and stored prior to execution, and then used to produce control pulses during execution. Besides their prohibitive cost and limited scalability, such instruments suffer from poor programmability due to the absence of an instruction set architecture (ISA). Limited memory for pulse storage ultimately determines the total number of supported quantum operations. In this work, we present a scalable qubit control system that enables efficient qubit control using a flexible ISA to drive a direct digital synthesis (DDS) pipeline producing nanosecond-accurate qubit control signals dynamically. The designed qubit controller provides a higher density of control channels, a scalable design, better programmability, and lower cost compared to state-of-the-art systems. In this work, we discuss the new qubit controller's capabilities, its architecture and instruction set, and present experimental results for coherent qubit control.

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