We exploit local quantum estimation theory to investigate the measurement of linear (g1) and quadratic (g2) coupling strengths in a driven-dissipative optomechanical system in the red-sideband regime. We consider model parameters inspired by recent experiments, in the regime g2 < g1. We find that: (i) g1 is easier to estimate than g2 at lower driving strengths, while (ii) strong enough driving allows the two parameters to be estimated with similar relative precision. Our analysis also reveals that the majority of information about g1 and g2 is encoded in the reduced state of the mechanical element, and that the best estimation strategy for both coupling parameters is well approximated by a direct measurement of the mechanical position quadr...
We derive a standard quantum limit for probing mechanical energy quantization in a class of systems ...
We compare two approaches for deriving corrections to the “linear model” of cavity optomechanics, in...
In the field of cavity optomechanics, proposals for quantum nondemolition (QND) measurements of phon...
We exploit local quantum estimation theory to investigate the measurement of linear (g1) and quadrat...
This thesis examines the optimal estimation of parameters in a variety of quantum oscillator models,...
This thesis examines the optimal estimation of parameters in a variety of quantum oscillator models,...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
We introduce a scheme to reconstruct an arbitrary quantum state of a mechanical oscillator network. ...
We derive a standard quantum limit for probing mechanical energy quantization in a class of systems ...
Optomechanical system, a hybrid system where mechanical and optical degrees of freedom are mutually ...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
This thesis explores the dynamics of optomechanical systems, which use radiation pressure to couple ...
We derive a standard quantum limit for probing mechanical energy quantization in a class of systems ...
We compare two approaches for deriving corrections to the “linear model” of cavity optomechanics, in...
In the field of cavity optomechanics, proposals for quantum nondemolition (QND) measurements of phon...
We exploit local quantum estimation theory to investigate the measurement of linear (g1) and quadrat...
This thesis examines the optimal estimation of parameters in a variety of quantum oscillator models,...
This thesis examines the optimal estimation of parameters in a variety of quantum oscillator models,...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
We study the fundamental bounds on precision measurements of parameters contained in a time-dependen...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
We introduce a scheme to reconstruct an arbitrary quantum state of a mechanical oscillator network. ...
We derive a standard quantum limit for probing mechanical energy quantization in a class of systems ...
Optomechanical system, a hybrid system where mechanical and optical degrees of freedom are mutually ...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
This thesis explores the dynamics of optomechanical systems, which use radiation pressure to couple ...
We derive a standard quantum limit for probing mechanical energy quantization in a class of systems ...
We compare two approaches for deriving corrections to the “linear model” of cavity optomechanics, in...
In the field of cavity optomechanics, proposals for quantum nondemolition (QND) measurements of phon...