论文标题

量子信息科学与工程的纳米材料

Nanomaterials for Quantum Information Science and Engineering

论文作者

Alfieri, Adam, Anantharaman, Surendra B., Zhang, Huiqin, Jariwala, Deep

论文摘要

量子信息科学与工程(QISE)需要使用量子机械状态进行信息处理,通信和感应以及纳米科学和纳米技术领域的领域,在21世纪占据了凝结的物理学和材料科学研究。到这一点,Qise的固态设备主要是由散装材料作为其组成部分设计的。在这篇综述中,我们考虑纳米材料(即具有内在量子限制的材料)如何具有固有的优势,而不是传统材料的Qise。我们确定了针对特定类型量子的材料挑战,并确定新兴纳米材料如何克服这些挑战。确定了基于纳米材料的量子设备的挑战和进展。我们旨在帮助缩小纳米技术和量子信息社区之间的差距,并激发研究的研究,这将导致下一代量子设备,以进行可扩展和实用的量子应用。

Quantum information science and engineering (QISE) which entails use of quantum mechanical states for information processing, communications, and sensing and the area of nanoscience and nanotechnology have dominated condensed matter physics and materials science research in the 21st century. Solid state devices for QISE have, to this point, predominantly been designed with bulk materials as their constituents. In this review, we consider how nanomaterials (i.e. materials with intrinsic quantum confinement) may offer inherent advantages over conventional materials for QISE. We identify the materials challenges for specific types of qubits, and we identify how emerging nanomaterials may overcome these challenges. Challenges for and progress towards nanomaterials based quantum devices are identified. We aim to help close the gap between the nanotechnology and quantum information communities and inspire research that will lead to next generation quantum devices for scalable and practical quantum applications.

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