Recent years have seen extraordinary progress in creating quantum states of mechanical oscillators, leading to great interest in potential applications for such systems in both fundamental as well as applied quantum science. One example is the use of these devices as transducers between otherwise disparate quantum systems. In this regard, a promising approach is to build integrated piezoelectric optomechanical devices that are then coupled to microwave circuits. Optical absorption, low quality factors, and other challenges have up to now prevented operation in the quantum regime, however. Here, we design and characterize such a piezoelectric optomechanical device fabricated from gallium phosphide in which a 2.9 GHz mechanical mode is couple...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
I will present recent work at Caltech on the integration of optomechanical crystals for light and so...
I will present recent work at Caltech on the integration of optomechanical crystals for light and so...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
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...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
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...
Piezoelectric optomechanical platforms present one of the most promising routes towards efficient tr...
The integration of new materials mediating light-matter interaction in nanoscale devices is a persis...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
I will present recent work at Caltech on the integration of optomechanical crystals for light and so...
I will present recent work at Caltech on the integration of optomechanical crystals for light and so...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
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...
Mechanical resonators can act as excellent intermediaries to interface single photons in the microwa...
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...
Piezoelectric optomechanical platforms present one of the most promising routes towards efficient tr...
The integration of new materials mediating light-matter interaction in nanoscale devices is a persis...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
Conversion between signals in the microwave and optical domains is of great interest both for classi...
I will present recent work at Caltech on the integration of optomechanical crystals for light and so...
I will present recent work at Caltech on the integration of optomechanical crystals for light and so...