Quantum-coherent nanoscience

被引:0
|
作者
Andreas J. Heinrich
William D. Oliver
Lieven M. K. Vandersypen
Arzhang Ardavan
Roberta Sessoli
Daniel Loss
Ania Bleszynski Jayich
Joaquin Fernandez-Rossier
Arne Laucht
Andrea Morello
机构
[1] Institute for Basic Science,Center for Quantum Nanoscience (QNS)
[2] Ewha Womans University,Physics Department
[3] MIT,Department of Electrical Engineering and Computer Science, and Department of Physics
[4] MIT,Lincoln Laboratory
[5] TU Delft,QuTech and Kavli Institute of Nanoscience
[6] University of Oxford,CAESR, The Clarendon Laboratory, Department of Physics
[7] University of Florence,Department of Chemistry ‘U. Schiff’ & INSTM
[8] University of Basel,Department of Physics
[9] University of California Santa Barbara,Department of Physics
[10] International Iberian Nanotechnology Laboratory (INL),QuantaLab
[11] Universidad de Alicante,Departamento de Física Aplicada
[12] UNSW Sydney,School of Electrical Engineering and Telecommunications
来源
Nature Nanotechnology | 2021年 / 16卷
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摘要
For the past three decades nanoscience has widely affected many areas in physics, chemistry and engineering, and has led to numerous fundamental discoveries, as well as applications and products. Concurrently, quantum science and technology has developed into a cross-disciplinary research endeavour connecting these same areas and holds burgeoning commercial promise. Although quantum physics dictates the behaviour of nanoscale objects, quantum coherence, which is central to quantum information, communication and sensing, has not played an explicit role in much of nanoscience. This Review describes fundamental principles and practical applications of quantum coherence in nanoscale systems, a research area we call quantum-coherent nanoscience. We structure this Review according to specific degrees of freedom that can be quantum-coherently controlled in a given nanoscale system, such as charge, spin, mechanical motion and photons. We review the current state of the art and focus on outstanding challenges and opportunities unlocked by the merging of nanoscience and coherent quantum operations.
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页码:1318 / 1329
页数:11
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