We develop a systematic method for deriving a quantum optical multi-mode Hamiltonian for the interaction of photons and phonons in nanophotonic dielectric materials by applying perturbation theory to the electromagnetic Hamiltonian. The Hamiltonian covers radiation pressure and electrostrictive interactions on equal footing. As a paradigmatic example, we apply our method to a cylindrical nanoscale waveguide, and derive a Hamiltonian description of Brillouin quantum optomechanics. We show analytically that in nanoscale waveguides radiation pressure dominates over electrostriction, in agreement with recent experiments. The calculated photon-phonon coupling parameters are used to infer gain parameters of Stokes Brillouin scattering in good agr...
This dissertation aims to investigate systems in which several optical and mechanical degrees of fre...
We compare two approaches for deriving corrections to the “linear model” of cavity optomechanics, in...
The field of optomechanics provides us with several examples of quantum photon-phonon interface. In ...
So far, Brillouin scattering and cavity optomechanics have been mostly disconnected branches of rese...
Coherent control of traveling acoustic excitations in a waveguide system is an interesting way to ma...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2013.Cataloged from PDF ve...
We present the basic ingredients of continuum optomechanics, i.e. the suitable extension of cavity-o...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
We explore the possibility of the formation of photon-phonon entangled states in nanoscale wires by ...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
© 2015 American Physical Society. ©2015 American Physical Society. Recent theoretical studies of sti...
Recent theoretical studies of stimulated Brillouin scattering (SBS) in nanoscale devices have led to...
Optomechanical system, a hybrid system where mechanical and optical degrees of freedom are mutually ...
Cavity quantum optomechanics is a field of investigation which studies the interaction between optic...
Observations of thermally driven transverse vibration of a photonic crystal waveguide (PCW) are repo...
This dissertation aims to investigate systems in which several optical and mechanical degrees of fre...
We compare two approaches for deriving corrections to the “linear model” of cavity optomechanics, in...
The field of optomechanics provides us with several examples of quantum photon-phonon interface. In ...
So far, Brillouin scattering and cavity optomechanics have been mostly disconnected branches of rese...
Coherent control of traveling acoustic excitations in a waveguide system is an interesting way to ma...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2013.Cataloged from PDF ve...
We present the basic ingredients of continuum optomechanics, i.e. the suitable extension of cavity-o...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
We explore the possibility of the formation of photon-phonon entangled states in nanoscale wires by ...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
© 2015 American Physical Society. ©2015 American Physical Society. Recent theoretical studies of sti...
Recent theoretical studies of stimulated Brillouin scattering (SBS) in nanoscale devices have led to...
Optomechanical system, a hybrid system where mechanical and optical degrees of freedom are mutually ...
Cavity quantum optomechanics is a field of investigation which studies the interaction between optic...
Observations of thermally driven transverse vibration of a photonic crystal waveguide (PCW) are repo...
This dissertation aims to investigate systems in which several optical and mechanical degrees of fre...
We compare two approaches for deriving corrections to the “linear model” of cavity optomechanics, in...
The field of optomechanics provides us with several examples of quantum photon-phonon interface. In ...