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Quantum materials engineering by structured cavity vacuum fluctuations
DOI:10.1088/2633-4356/ad4e8b.png)
摘要
En 中文
A paradigm shift in the research of optical cavities is taking place, focusing on the properties of materials inside cavities. The possibility to affect changes of material groundstates with or without actual photon population inside cavities is an avenue that promises a novel view of materials science and provides a new knob to control quantum phenomena in materials. Here, we present three theoretical scenarios where such groundstate quantum phase transitions are predicted by the coupling of the matter to mere vacuum fluctuations of the cavity, as a realizations of cavity materials engineering in the dark.
Keyword:
quantum materials engineering
light-matter interaction in materials
strong light-matter coupling
期刊
IF:
3.6
论文数:
155
被引数:
308
机构
引用论文
Ground state chemistry under vibrational strong coupling: dependence of thermodynamic parameters on the Rabi splitting energy振动强耦合下的基态化学: 热力学参数对Rabi分裂能的依赖性
NANOPHOTONICS
IF6.6
Relevance of the Quadratic Diamagnetic and Self-Polarization Terms in Cavity Quantum Electrodynamics腔量子电动力学中二次抗磁和自极化项的相关性
ACS PHOTONICS
IF6.7

