Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them an indispensable part of today's technological landscape. These unique capabilities motivate bringing mechanical devices into the quantum domain by interfacing them with engineered quantum circuits. Proposals to combine microwave-frequency mechanical resonators with superconducting devices suggest the possibility of powerful quantum acoustic processors. Meanwhile, experiments in several mechanical systems have demonstrated quantum state control and readout, phonon number resolution, and phonon-mediated qubit-qubit interactions. Currently, these acoustic platforms lack processors capable of controlling multiple mechanical oscillators' quantum...
We present and analyze a protocol for driven-dissipatively preparing and stabilizing a manifold of q...
Tavis-Cummings (TC) cavity quantum electrodynamical effects, describing the interaction of $N$ atoms...
Nanomechanical oscillators as well as Rydberg-atomic waveguides hosted on microfabricated chip surfa...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
We suggest a nanoelectromechanical setup and corresponding time-protocol for controlling parameters ...
We present exact solutions for the quantum time evolution of two spatially separated, local inductor...
Phonons, the ubiquitous quanta of vibrational energy, play a vital role in the performance of many q...
We study a nanoelectromechanical system consisting of a Cooper pair box qubit performing nanomechani...
The ability to control the motion of mechanical systems through interaction with light has opened th...
We propose a scheme in which the quantum coherence of a nanomechanical resonator can be probed using...
A highly successful architecture for the exchange of single quanta between coupled quantum systems i...
Controlling long-lived mechanical oscillators in the quantum regime holds promises for quantum infor...
Recent technical developments in the fields of quantum electromechanics and optomechanics have spawn...
Mechanical resonators are a promising way for interfacing qubits in order to realize hybrid quantum ...
The development of mechanical oscillator-based hybrid quantum systems has allowed quantum state prep...
We present and analyze a protocol for driven-dissipatively preparing and stabilizing a manifold of q...
Tavis-Cummings (TC) cavity quantum electrodynamical effects, describing the interaction of $N$ atoms...
Nanomechanical oscillators as well as Rydberg-atomic waveguides hosted on microfabricated chip surfa...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
We suggest a nanoelectromechanical setup and corresponding time-protocol for controlling parameters ...
We present exact solutions for the quantum time evolution of two spatially separated, local inductor...
Phonons, the ubiquitous quanta of vibrational energy, play a vital role in the performance of many q...
We study a nanoelectromechanical system consisting of a Cooper pair box qubit performing nanomechani...
The ability to control the motion of mechanical systems through interaction with light has opened th...
We propose a scheme in which the quantum coherence of a nanomechanical resonator can be probed using...
A highly successful architecture for the exchange of single quanta between coupled quantum systems i...
Controlling long-lived mechanical oscillators in the quantum regime holds promises for quantum infor...
Recent technical developments in the fields of quantum electromechanics and optomechanics have spawn...
Mechanical resonators are a promising way for interfacing qubits in order to realize hybrid quantum ...
The development of mechanical oscillator-based hybrid quantum systems has allowed quantum state prep...
We present and analyze a protocol for driven-dissipatively preparing and stabilizing a manifold of q...
Tavis-Cummings (TC) cavity quantum electrodynamical effects, describing the interaction of $N$ atoms...
Nanomechanical oscillators as well as Rydberg-atomic waveguides hosted on microfabricated chip surfa...