The ability to engineer both linear and nonlinear coupling with a mechanical resonator is an important goal for the preparation and investigation of macroscopic mechanical quantum behavior. In this work, a measurement based scheme is presented where linear or square mechanical-displacement coupling can be achieved using the optomechanical interaction that is linearly proportional to the mechanical position. The resulting square-displacement measurement strength is compared to that attainable in the dispersive case that has a direct interaction with the mechanical-displacement squared. An experimental protocol and parameter set are discussed for the generation and observation of non-Gaussian states of motion of the mechanical element
The interfacing between optical cavities and mechanical systems has given rise to the rapid developm...
Mechanical oscillators are extensively used in applications ranging from chronometry using quartz os...
Quantum optical measurement techniques offer a rich avenue for quantum control of mechanical oscilla...
The ability to engineer both linear and non-linear coupling with a mechanical resonator is an import...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....
Macroscopic mechanical objects and electromagnetic degrees of freedom can couple to each other throu...
We present an optomechanical displacement transducer that relies on three cavity modes parametricall...
Utilizing the tools of quantum optics to prepare and manipulate quantum states of motion of a mechan...
A mechanical oscillator coupled to the optical field in a cavity is a typical cavity optomechanical ...
We analyse the generic case of an optomechanical system with coupling quadratic in the mechanical di...
We theoretically show that a geometric phase, generated by a sequence of four optomechanical interac...
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
We exploit local quantum estimation theory to investigate the measurement of linear (g1) and quadrat...
We analyze quantum effects occurring in optomechanical systems where the coupling between an optical...
The interfacing between optical cavities and mechanical systems has given rise to the rapid developm...
Mechanical oscillators are extensively used in applications ranging from chronometry using quartz os...
Quantum optical measurement techniques offer a rich avenue for quantum control of mechanical oscilla...
The ability to engineer both linear and non-linear coupling with a mechanical resonator is an import...
Precision measurement of nonlinear observables is an important goal in all facets of quantum optics....
Macroscopic mechanical objects and electromagnetic degrees of freedom can couple to each other throu...
We present an optomechanical displacement transducer that relies on three cavity modes parametricall...
Utilizing the tools of quantum optics to prepare and manipulate quantum states of motion of a mechan...
A mechanical oscillator coupled to the optical field in a cavity is a typical cavity optomechanical ...
We analyse the generic case of an optomechanical system with coupling quadratic in the mechanical di...
We theoretically show that a geometric phase, generated by a sequence of four optomechanical interac...
We study the quantum measurement of a cantilever using a parametrically coupled electromagnetic cavi...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
We exploit local quantum estimation theory to investigate the measurement of linear (g1) and quadrat...
We analyze quantum effects occurring in optomechanical systems where the coupling between an optical...
The interfacing between optical cavities and mechanical systems has given rise to the rapid developm...
Mechanical oscillators are extensively used in applications ranging from chronometry using quartz os...
Quantum optical measurement techniques offer a rich avenue for quantum control of mechanical oscilla...