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Quantum electromechanics with levitated nanoparticles
DOI:10.1038/s41534-020-00333-7.png)
摘要
En 中文
Preparing and observing quantum states of nanoscale particles is a challenging task with great relevance for quantum technologies and tests of fundamental physics. In contrast to atomic systems with discrete transitions, nanoparticles exhibit a practically continuous absorption spectrum and thus their quantum dynamics cannot be easily manipulated. Here, we demonstrate that charged nanoscale dielectrics can be artificially endowed with a discrete level structure by coherently interfacing their rotational and translational motion with a superconducting qubit. We propose a pulsed scheme for the generation and read-out of motional quantum superpositions and entanglement between several levitated nanoparticles, providing an all-electric platform for networked hybrid quantum devices.
Keyword:
PERMANENT DIPOLE-MOMENT
ENTANGLEMENT
TEMPERATURE
DYNAMICS
STATE
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期刊
IF:
8.3
论文数:
1.4K
被引数:
8.1K
机构
引用论文
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Energies
IF0

