论文标题

摘要:芝加哥量子交换(CQE)脉冲级量子控制研讨会

Summary: Chicago Quantum Exchange (CQE) Pulse-level Quantum Control Workshop

论文作者

Smith, Kaitlin N., Ravi, Gokul Subramanian, Alexander, Thomas, Bronn, Nicholas T., Carvalho, Andre, Cervera-Lierta, Alba, Chong, Frederic T., Chow, Jerry M., Cubeddu, Michael, Hashim, Akel, Jiang, Liang, Lanes, Olivia, Otten, Matthew J., Schuster, David I., Gokhale, Pranav, Earnest, Nathan, Galda, Alexey

论文摘要

量子信息处理具有巨大的希望,可以超越当前计算领域的前沿。具体而言,量子计算有望加快解决某些问题的解决,并且基于化学,工程和金融中的应用有很多创新的机会。但是,要利用量子计算的全部潜力,我们不仅必须强调制造更好的Qubit,推进我们的算法和开发量子软件。为了将设备扩展到容耐容易状态,我们必须完善设备级量子控制。 2021年5月17日至18日,芝加哥量子交换(CQE)与IBM量子和Super.Tech合作,主持脉冲级量子控制研讨会。在研讨会上,来自学术界,国家实验室和行业的代表探讨了物理层进行微调量子处理的重要性。本报告的目的是总结本次会议的主题。

Quantum information processing holds great promise for pushing beyond the current frontiers in computing. Specifically, quantum computation promises to accelerate the solving of certain problems, and there are many opportunities for innovation based on applications in chemistry, engineering, and finance. To harness the full potential of quantum computing, however, we must not only place emphasis on manufacturing better qubits, advancing our algorithms, and developing quantum software. To scale devices to the fault tolerant regime, we must refine device-level quantum control. On May 17-18, 2021, the Chicago Quantum Exchange (CQE) partnered with IBM Quantum and Super.tech to host the Pulse-level Quantum Control Workshop. At the workshop, representatives from academia, national labs, and industry addressed the importance of fine-tuning quantum processing at the physical layer. The purpose of this report is to summarize the topics of this meeting for the quantum community at large.

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