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Will Quantum Computers Scale Without Inter-Chip Comms? A Structured Design Exploration to the Monolithic vs Distributed Architectures Quest

机译:量子计算机是否会缩放,没有芯片间通话?对整体vs分布式架构的结构化设计探索

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Being a very promising technology, with impressive advances in the recent years, it is still unclear how quantum computing will scale to satisfy the requirements of its most powerful applications. Although continued progress in the fabrication and control of qubits is required, quantum computing scalability will depend as well on a comprehensive architectural design considering a distributed multi-core approach as an alternative to the traditional monolithic version, hence including a communications perspective. However, this goes beyond introducing mere interconnects. Rather, it implies consolidating the full communications stack in the quantum computer structure. In this paper, we propose a double full-stack architecture encompassing quantum computation and quantum communications, which we use to address the monolithic versus distributed question with a structured design methodology. For that, we revisit the different quantum computing layers to capture and model their essence by highlighting the open design variables and performance metrics. Using behavioral models and actual measurements from existing quantum computers, the results of simulations suggest that multicore architectures may effectively unleash the full quantum computer potential.
机译:作为一个非常有前途的技术,近年来令人印象深刻的进步,尚不清楚量子计算如何规模,以满足其最强大的应用的要求。尽管需要在制造和控制Qubits中进行的继续进行,但是Quantum计算可扩展性也将在考虑分布式多核方法作为传统单片版本的替代方案的综合架构设计中,因此包括通信视角。但是,这不仅仅是引入互连。相反,它意味着整合量子计算机结构中的完整通信堆栈。在本文中,我们提出了一种包括量子计算和量子通信的双全堆叠架构,我们用来用结构化的设计方法来解决整体与分布式问题。为此,我们通过突出开放的设计变量和性能指标来重新捕捉不同的量子计算层来捕获和模拟它们的本质。使用来自现有量子计算机的行为模型和实际测量,模拟结果表明,多核架构可以有效地释放出完全量子计算机电位。

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