Recently it has been demonstrated that the combination of continuous position detection with detuned parametric driving can lead to significant steady-state mechanical squeezing, far beyond the 3 dB limit normally associated with parametric driving. In this work, we show the close connection between this detuned scheme and quantum non-demolition (QND) measurement of a single mechanical quadrature. In particular, we show that applying an experimentally realistic detuned parametric drive to a cavity optomechanical system allows one to effectively realize a QND measurement despite being in the bad-cavity limit. In the limit of strong squeezing, we show that this scheme offers significant advantages over standard backaction evasion, not only by...
According to quantum mechanics, a harmonic oscillator can never be completely at rest. Even in the g...
We experimentally surpass the 3 dB limit to steady-state parametric squeezing of a mechanical oscill...
We review a scheme for performing a backaction-evading measurement of one mechanical quadrature in a...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
It has been predicted and experimentally demonstrated that by injecting squeezed light into an optom...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
Nonlinear forces allow motion of a mechanical oscillator to be squeezed below the zero-point motion....
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
The combination of parametric driving and quantum measurement allows mechanical squeezing far surpas...
It has been predicted and experimentally demonstrated that by injecting squeezed light into an optom...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
We discuss how large amounts of steady-state quantum squeezing (beyond 3 dB) of a mechanical resonat...
The knowledge about nonlinear quantum optics is applied to the study of the degenerate optical param...
According to quantum mechanics, a harmonic oscillator can never be completely at rest. Even in the g...
We experimentally surpass the 3 dB limit to steady-state parametric squeezing of a mechanical oscill...
We review a scheme for performing a backaction-evading measurement of one mechanical quadrature in a...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
It has been predicted and experimentally demonstrated that by injecting squeezed light into an optom...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
Nonlinear forces allow motion of a mechanical oscillator to be squeezed below the zero-point motion....
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
The combination of parametric driving and quantum measurement allows mechanical squeezing far surpas...
It has been predicted and experimentally demonstrated that by injecting squeezed light into an optom...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
We discuss how large amounts of steady-state quantum squeezing (beyond 3 dB) of a mechanical resonat...
The knowledge about nonlinear quantum optics is applied to the study of the degenerate optical param...
According to quantum mechanics, a harmonic oscillator can never be completely at rest. Even in the g...
We experimentally surpass the 3 dB limit to steady-state parametric squeezing of a mechanical oscill...
We review a scheme for performing a backaction-evading measurement of one mechanical quadrature in a...