第三代超导量子退火处理器设计中的架构考量
量子物理
2021-08-06 v1
摘要
早期几代超导量子退火处理器为研究可扩展量子计算技术的性能提供了宝贵平台。这些研究直接影响了我们设计下一代处理器的方法。我们这一代的设计优先级包括:提高每量子比特连接度、问题哈密顿能量尺度与前代相近、降低哈密顿规范误差,以及在扩大处理器规模的同时保持编程与读出时间不变或缩短。在此我们讨论促成满足这些设计优先级的特定创新及其带来的处理器架构。
引用
@article{arxiv.2108.02322,
title = {Architectural considerations in the design of a third-generation superconducting quantum annealing processor},
author = {Kelly Boothby and Colin Enderud and Trevor Lanting and Reza Molavi and Nicholas Tsai and Mark H. Volkmann and Fabio Altomare and Mohammad H. Amin and Michael Babcock and Andrew J. Berkley and Catia Baron Aznar and Martin Boschnak and Holly Christiani and Sara Ejtemaee and Bram Evert and Matthew Gullen and Markus Hager and Richard Harris and Emile Hoskinson and Jeremy P. Hilton and Kais Jooya and Ann Huang and Mark W. Johnson and Andrew D. King and Eric Ladizinsky and Ryan Li and Allison MacDonald and Teresa Medina Fernandez and Richard Neufeld and Mana Norouzpour and Travis Oh and Isil Ozfidan and Paul Paddon and Ilya Perminov and Gabriel Poulin-Lamarre and Thomas Prescott and Jack Raymond and Mauricio Reis and Chris Rich and Aidan Roy and Hossein Sadeghi Esfahani and Yuki Sato and Ben Sheldan and Anatoly Smirnov and Loren J. Swenson and Jed Whittaker and Jason Yao and Alexander Yarovoy and Paul I. Bunyk},
journal= {arXiv preprint arXiv:2108.02322},
year = {2021}
}