Mechanical resonators can act as excellent intermediaries to interface single photons in the microwave and optical domains due to their high quality factors. Nevertheless, the optical pump required to overcome the large energy difference between the frequencies can add significant noise to the transduced signal. Here we exploit the remarkable properties of thin-film gallium phosphide to demonstrate bi-directional on-chip conversion between microwave and optical frequencies, realized by piezoelectric actuation of a Gigahertz-frequency optomechanical resonator. The large optomechanical coupling and the suppression of two-photon absorption in the material allows us to operate the device at optomechanical cooperativities greatly exceeding one. ...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
Recent years have seen extraordinary progress in creating quantum states of mechanical oscillators, ...
In cavity optomechanics, optical fields are coupled to the displacement of mechanical resonators. Wh...
In cavity optomechanics, optical fields are coupled to the displacement of mechanical resonators. Wh...
Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional c...
Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional c...
Abstract Phonons traveling in solid-state devices are emerging as a universal excitation for couplin...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
Cavity Optomechanical oscillators (OMOs) rely upon photon radiation pressure to induce harmonic mech...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
Recent years have seen extraordinary progress in creating quantum states of mechanical oscillators, ...
In cavity optomechanics, optical fields are coupled to the displacement of mechanical resonators. Wh...
In cavity optomechanics, optical fields are coupled to the displacement of mechanical resonators. Wh...
Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional c...
Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional c...
Abstract Phonons traveling in solid-state devices are emerging as a universal excitation for couplin...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
Cavity Optomechanical oscillators (OMOs) rely upon photon radiation pressure to induce harmonic mech...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...
In the field of quantum computation and communication there is a compelling need for quantum-coheren...