Coulomb interaction breaks the mechanical dark mode in degenerate optomechanical resonators, allowing simultaneous ground-state cooling, squeezing beyond 3 dB, and multipartite entanglement.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
fields
quant-ph 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Degenerate dual-pump SFWM in a chi-3 microring resonator generates robust even cat-like states in the signal mode, with fidelity above 0.9 under moderate dissipation when full quantum pump depletion is included.
citing papers explorer
-
Breaking mechanical dark mode via the Coulomb interaction
Coulomb interaction breaks the mechanical dark mode in degenerate optomechanical resonators, allowing simultaneous ground-state cooling, squeezing beyond 3 dB, and multipartite entanglement.
-
Generation of Schr\"odinger cat-like states via degenerate dual pump spontaneous four-wave mixing in a $\chi^{(3)}$ microring resonator
Degenerate dual-pump SFWM in a chi-3 microring resonator generates robust even cat-like states in the signal mode, with fidelity above 0.9 under moderate dissipation when full quantum pump depletion is included.