We propose two schemes to generate entanglement between a pair of mechanical oscillators using parametric amplification. In contrast to existing parametric drive-based protocols, both schemes operate in the steady-state. Using a detuned parametric drive to maintain equilibrium and to couple orthogonal quadratures, our approach can be viewed as a two-mode extension of previous proposals for parametric squeezing. We find that robust steady-state entanglement is possible for matched oscillators with well-controlled coupling. In addition, one of the proposed schemes is robust to differences in the damping rates of the two oscillators
We show that a squeezed bath, that acts on the central element of a harmonic chain, can drive the wh...
We present a scheme for realizing phase-controlled entanglement in a microwave optomechanical system...
We apply the input-output theory of optical cavities to formulate a quantum treatment of a continuou...
We theoretically investigate the stability of a two cascaded cavity optomechanical system with optic...
We study the problem of squeezing exchange between two modes of the electromagnetic field modeled by...
Robust entanglement created between an optical cavity field mode and a macroscopic vibrating mirror ...
We study a device consisting of a dc-SQUID with two sections of its loop acting as two mechanical re...
We propose here a setup to generate and evaluate the entanglement between two mechanical resonators ...
We present schemes for stabilizing entangled states between bosonic cavity modes. Weconsider a pair ...
We propose here a fully backaction-evading scheme for the measurement of the entanglement between tw...
Squeezed and entangled two-mode light can be generated by the combination of degenerate and nondegen...
We present a scheme for entangling two micromechanical oscillators. The scheme exploits the quantum ...
We investigate a general scheme for generating, either dynamically or in the steady state, continuou...
Nonlinear forces allow motion of a mechanical oscillator to be squeezed below the zero-point motion....
There has recently been considerable interest in the study of mechanical oscillators in the quantum ...
We show that a squeezed bath, that acts on the central element of a harmonic chain, can drive the wh...
We present a scheme for realizing phase-controlled entanglement in a microwave optomechanical system...
We apply the input-output theory of optical cavities to formulate a quantum treatment of a continuou...
We theoretically investigate the stability of a two cascaded cavity optomechanical system with optic...
We study the problem of squeezing exchange between two modes of the electromagnetic field modeled by...
Robust entanglement created between an optical cavity field mode and a macroscopic vibrating mirror ...
We study a device consisting of a dc-SQUID with two sections of its loop acting as two mechanical re...
We propose here a setup to generate and evaluate the entanglement between two mechanical resonators ...
We present schemes for stabilizing entangled states between bosonic cavity modes. Weconsider a pair ...
We propose here a fully backaction-evading scheme for the measurement of the entanglement between tw...
Squeezed and entangled two-mode light can be generated by the combination of degenerate and nondegen...
We present a scheme for entangling two micromechanical oscillators. The scheme exploits the quantum ...
We investigate a general scheme for generating, either dynamically or in the steady state, continuou...
Nonlinear forces allow motion of a mechanical oscillator to be squeezed below the zero-point motion....
There has recently been considerable interest in the study of mechanical oscillators in the quantum ...
We show that a squeezed bath, that acts on the central element of a harmonic chain, can drive the wh...
We present a scheme for realizing phase-controlled entanglement in a microwave optomechanical system...
We apply the input-output theory of optical cavities to formulate a quantum treatment of a continuou...