The rapid development of high-QM macroscopic mechanical resonators has enabled great advances in optomechanics. Further improvements could allow for quantum-limited or quantum-enhanced applications at ambient temperature. Some of the remaining challenges include the integration of high-QM structures on a chip, while simultaneously achieving large coupling strengths through an optical read-out. Here, we present a versatile fabrication method, which allows us to build fully integrated optomechanical structures. We place a photonic crystal cavity directly above a mechanical resonator with high-QM fundamental out-of-plane mode, separated by a small gap. The highly confined optical field has a large overlap with the mechanical mode, enabling str...
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
Design of a doubly-clamped beam structure capable of localizing mechanical and optical energy at the...
The quantum to classical transition in large mechanical systems is still a mystery. An ideal tool fo...
The rapid development of high-Q macroscopic mechanical resonators has enabled great advances in opto...
Multielement cavity optomechanics constitutes a direction to observe novel effects with mechanical r...
Cavity optomechanics examines the mutual interaction between light and mechanical motion for control...
Thermal motion of a room-temperature mechanical resonator typically dominates the quantum backaction...
All quantum optomechanics experiments to date operate at cryogenic temperatures, imposing severe tec...
Cavity optomechanics is a rapidly evolving field operating at the intersection of solid-state physic...
In recent years, detectible noise spectral densities and displacement caused byoptically driven opto...
Multielement cavity optomechanics constitutes a direction to observe novel effects with mechanical r...
Cavity optomechanics studies the interaction between mechanical resonators and optical cavities thro...
Cavity Optomechanics is a field employing optical control over mechanical oscillators with a variety...
We present the design, fabrication, and characterization of a planar silicon photonic crystal cavity...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
Design of a doubly-clamped beam structure capable of localizing mechanical and optical energy at the...
The quantum to classical transition in large mechanical systems is still a mystery. An ideal tool fo...
The rapid development of high-Q macroscopic mechanical resonators has enabled great advances in opto...
Multielement cavity optomechanics constitutes a direction to observe novel effects with mechanical r...
Cavity optomechanics examines the mutual interaction between light and mechanical motion for control...
Thermal motion of a room-temperature mechanical resonator typically dominates the quantum backaction...
All quantum optomechanics experiments to date operate at cryogenic temperatures, imposing severe tec...
Cavity optomechanics is a rapidly evolving field operating at the intersection of solid-state physic...
In recent years, detectible noise spectral densities and displacement caused byoptically driven opto...
Multielement cavity optomechanics constitutes a direction to observe novel effects with mechanical r...
Cavity optomechanics studies the interaction between mechanical resonators and optical cavities thro...
Cavity Optomechanics is a field employing optical control over mechanical oscillators with a variety...
We present the design, fabrication, and characterization of a planar silicon photonic crystal cavity...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
We demonstrate a new optomechanical device system which allows highly efficient transduction of femt...
Design of a doubly-clamped beam structure capable of localizing mechanical and optical energy at the...
The quantum to classical transition in large mechanical systems is still a mystery. An ideal tool fo...