In cavity optomechanics, optical fields are coupled to the displacement of mechanical resonators. While it is interesting to study fundamental aspects of this interaction, it is the ability to link this mechanical displacement to various other degrees of freedom that inspires many applications in the field. In these applications, the mechanical resonator can be used as a handle to an external influence for the purpose of sensing, but also as a transducer between two otherwise detached degrees of freedom. The latter approach is the focus of this work. A particularly interesting regime for such a transduction process is between a few-gigahertz microwave tone and optical photons at telecom wavelengths around 1550 nm, connecting the operating r...
Piezoelectric optomechanical platforms present one of the most promising routes towards efficient tr...
International audienceMicrowave optomechanical circuitry is attractive for both fundamental research...
International audienceMicrowave optomechanical circuitry is attractive for both fundamental research...
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...
Recent years have seen extraordinary progress in creating quantum states of mechanical oscillators, ...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
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...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
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...
Piezoelectric optomechanical platforms present one of the most promising routes towards efficient tr...
International audienceMicrowave optomechanical circuitry is attractive for both fundamental research...
International audienceMicrowave optomechanical circuitry is attractive for both fundamental research...
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...
Recent years have seen extraordinary progress in creating quantum states of mechanical oscillators, ...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
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...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
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...
Piezoelectric optomechanical platforms present one of the most promising routes towards efficient tr...
International audienceMicrowave optomechanical circuitry is attractive for both fundamental research...
International audienceMicrowave optomechanical circuitry is attractive for both fundamental research...