Strong dissipation of plasmonic resonances is detrimental to quantum manipulation. To enhance the quantum coherence, we propose to tailor the local density of states (LDOS) of plasmonic resonances by integrating with a photonic cavity operating at a chiral exceptional point (CEP), where the phase of light field can offer a new degree of freedom to flexibly manipulate the quantum states. A quantized few-mode theory is employed to reveal that the LDOS of the proposed hybrid cavity can evolve into sub-Lorentzian lineshape, with order-of-magnitude linewidth narrowing and additionally a maximum of eightfold enhancement compared to the usual plasmonic-photonic cavity without CEP. This results in the enhanced coherent light-matter interaction acco...
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on-mirror cavit...
Protecting quantum coherences in matter from the detrimental effects introduced by its environment i...
Copyright © 2018 American Chemical Society. The strong coupling of a dense layer of molecular excito...
An open quantum system operated at the spectral singularities where dimensionality reduces, known as...
Quantum plasmonics experiments have on multiple occasions resulted in the observation of quantum coh...
Light-matter interaction is a pivotal effect that involves the synergetic interplay of electromag- n...
Cavity polaritons derived from the strong light-matter interaction at the quantum level provide a ba...
In the light-matter strong coupling regime, the excited state of quantum emitters is inextricably li...
Geometrical chirality is a widespread phenomenon that has fundamental implications for discriminatin...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
Non-Hermitian spectral degeneracies, known as exceptional points (EPs), feature simultaneous coalesc...
We propose and demonstrate a new approach for achieving enhanced light-matter interactions with quan...
Purcell-enhanced photon emission into a cavity is at the heart of many schemes for interfacing quant...
Strong light–matter coupling in quantum cavities provides a pathway to break fundamental materials s...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on-mirror cavit...
Protecting quantum coherences in matter from the detrimental effects introduced by its environment i...
Copyright © 2018 American Chemical Society. The strong coupling of a dense layer of molecular excito...
An open quantum system operated at the spectral singularities where dimensionality reduces, known as...
Quantum plasmonics experiments have on multiple occasions resulted in the observation of quantum coh...
Light-matter interaction is a pivotal effect that involves the synergetic interplay of electromag- n...
Cavity polaritons derived from the strong light-matter interaction at the quantum level provide a ba...
In the light-matter strong coupling regime, the excited state of quantum emitters is inextricably li...
Geometrical chirality is a widespread phenomenon that has fundamental implications for discriminatin...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
Non-Hermitian spectral degeneracies, known as exceptional points (EPs), feature simultaneous coalesc...
We propose and demonstrate a new approach for achieving enhanced light-matter interactions with quan...
Purcell-enhanced photon emission into a cavity is at the heart of many schemes for interfacing quant...
Strong light–matter coupling in quantum cavities provides a pathway to break fundamental materials s...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on-mirror cavit...
Protecting quantum coherences in matter from the detrimental effects introduced by its environment i...
Copyright © 2018 American Chemical Society. The strong coupling of a dense layer of molecular excito...