We study a parametrically driven nanomechanical resonator capacitively coupled to a microwave cavity. If the nanoresonator can be cooled to near its quantum ground state then quantum squeezing of a quadrature of the nanoresonator motion becomes feasible. We consider the adiabatic limit in which the cavity mode is slaved to the nanoresonator mode. By driving the cavity on its red-detuned sideband, the squeezing can be coupled into the microwave field at the cavity resonance. The red-detuned sideband drive is also compatible with the goal of ground state cooling. Squeezing of the output microwave field may be inferred using a technique similar to that used to infer squeezing of the field produced by a Josephson parametric amplifier, and subse...
We analyze squeezing of the nanoresonator state produced by periodic measurement of position by a qu...
The sensitive measurement of electrical signals is at the heart of modern technology. According to t...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
We study a parametrically driven nanomechanical resonator capacitively coupled to a microwave cavity...
We show how a superconducting coplanar microwave cavity can be used as a quantum limited displacemen...
We show that the nanoresonator position can be squeezed significantly below the ground state level b...
We show that the nanoresonator position can be squeezed significantly below the ground state level b...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
Classical squeezing allows manipulating the noise distribution of thermal fluctuations by suppressin...
Quantum mechanics places limits on the minimum energy of a harmonic oscillator via the ever-present ...
We show how the coherent oscillations of a nanomechanical resonator can be entangled with a microwav...
We theoretically study a driven nanomechanical resonator capacitively coupled to a superconducting m...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
In the recent decade, tremendous amount of work has been done to probe the quantum properties of mac...
We analyze squeezing of the nanoresonator state produced by periodic measurement of position by a qu...
The sensitive measurement of electrical signals is at the heart of modern technology. According to t...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
We study a parametrically driven nanomechanical resonator capacitively coupled to a microwave cavity...
We show how a superconducting coplanar microwave cavity can be used as a quantum limited displacemen...
We show that the nanoresonator position can be squeezed significantly below the ground state level b...
We show that the nanoresonator position can be squeezed significantly below the ground state level b...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
Classical squeezing allows manipulating the noise distribution of thermal fluctuations by suppressin...
Quantum mechanics places limits on the minimum energy of a harmonic oscillator via the ever-present ...
We show how the coherent oscillations of a nanomechanical resonator can be entangled with a microwav...
We theoretically study a driven nanomechanical resonator capacitively coupled to a superconducting m...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
In the recent decade, tremendous amount of work has been done to probe the quantum properties of mac...
We analyze squeezing of the nanoresonator state produced by periodic measurement of position by a qu...
The sensitive measurement of electrical signals is at the heart of modern technology. According to t...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...