Generating nonclassical states of a macroscopic mechanical object has been a subject of considerable interest. It offers a route toward fundamental test of quantum mechanics in an unexplored regime. However, a macroscopic quantum state is very susceptible to decoherence due to the environment. One way to generate robust quantum states is quantum reservoir engineering. In this work, we utilize the reservoir engineering scheme to generate a steady quantum squeezed state of a micron-scale mechanical oscillator in an electromechanical system. Together with the backaction evading measurement technique, we demonstrate a quantum nondemolition measurement of the mechanical quadratures to characterize the quantum squeezed state. By measuring the qu...
We study a nanoelectromechanical system consisting of a Cooper pair box qubit performing nanomechani...
The development of mechanical oscillator-based hybrid quantum systems has allowed quantum state prep...
We analyze squeezing of the nanoresonator state produced by periodic measurement of position by a qu...
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...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
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...
Quantum mechanics places limits on the minimum energy of a harmonic oscillator via the ever-present ...
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Experiments to probe the basic quantum ...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
The investigation of macroscopic quantum phenomena is a current active area of research that offers ...
We study a nanoelectromechanical system consisting of a Cooper pair box qubit performing nanomechani...
The development of mechanical oscillator-based hybrid quantum systems has allowed quantum state prep...
We analyze squeezing of the nanoresonator state produced by periodic measurement of position by a qu...
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...
We use a reservoir engineering technique based on two-tone driving to generate and stabilize a quant...
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...
Quantum mechanics places limits on the minimum energy of a harmonic oscillator via the ever-present ...
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Experiments to probe the basic quantum ...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
The investigation of macroscopic quantum phenomena is a current active area of research that offers ...
We study a nanoelectromechanical system consisting of a Cooper pair box qubit performing nanomechani...
The development of mechanical oscillator-based hybrid quantum systems has allowed quantum state prep...
We analyze squeezing of the nanoresonator state produced by periodic measurement of position by a qu...