activity
20152020
most cited-Symmetry-Breaking Chaos in Optomechanics

356 citations · 817 across the 9 of their papers we have counts for

collaborators

24 papers

physics.optics2020

Highly nonclassical phonon emission statistics through two-phonon loss of van der Pol oscillator

Jiahua Li, Chunling Ding, Ying Wu

The ability to produce nonclassical wave in a system is essential for advances in quantum communication and computation. Here, we propose a scheme to generate highly nonclassical p…

physics.optics20202 cited

Optomechanically induced carrier-envelope-phase dependent effects and their analytical solutions

Jinyong Ma, Jinghui Gan, Giovanni Guccione +5

To date, investigations of carrier-envelope-phase (CEP) dependent effects have been limited to optical pulses with few cycles and high intensity, and have not been reported for oth…

quant-ph2019209 cited

Magnon Blockade in a Hybrid Ferromagnet-Superconductor Quantum System

Zeng-Xing Liu, Hao Xiong, Ying Wu

The implementation of a single magnon level quantum manipulation is one of the fundamental targets in quantum magnetism with a significant practical relevance for precision metrolo…

quant-ph2019

Interplay of quantum phase transition and flat band in hybrid lattices

Gui-Lei Zhu, Hamidreza Ramezani, Clive Emary +3

We investigate the interplay of superradiant phase transition (SPT) and energy band physics in an extended Dicke-Hubbard lattice whose unit cell consists of a Dicke model coupled t…

quant-ph2019

-phonon bundle emission via the anti-Stokes process

Qian Bin, Xin-You Lü, Fabrice P. Laussy +2

We demonstrate theoretically the bundle emission of strongly correlated phonons in an acoustic cavity QED system. The mechanism relies on anti-Stokes resonances that generate s…

quant-ph2019

Single-photon-triggered quantum chaos

Gui-Lei Zhu, Xin-You Lü, Li-Li Zheng +3

We demonstrate how to manipulate quantum chaos with a single photon in a hybrid quantum device combining cavity QED and optomechanics. Specifically, we show that this system change…