Recent experiments on quantum behavior in microfabricated solid-state systems suggest tantalizing connections to quantum optics. Several of these experiments address the prototypical problem of cavity quantum electrodynamics: a two-level system coupled to a quantum harmonic oscillator. Such devices may allow the exploration of parameter regimes outside the near-resonance and weak-coupling assumptions of the ubiquitous rotating-wave approximation (RWA), necessitating other theoretical approaches. One such approach is an adiabatic approximation in the limit that the oscillator frequency is much larger than the characteristic frequency of the two-level system. A derivation of the approximation is presented, together with a discussion of its ap...
AbstractWe investigate the quantum entropy, its power spectrum, and the excitation inversion of a Co...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.82.132501.We ...
Funding support from the National Science Foundation and the Leverhulme Trust is acknowledged.The fa...
Funding support from the National Science Foundation and the Leverhulme Trust is acknowledged.The fa...
We consider a quantum model of a nanomechanical flexing beam resonator interacting with a bath compr...
We analyze the quantum dynamics of a micromechanical resonator capacitively coupled to a Cooper-pair...
We analyze the quantum dynamics of a micromechanical resonator capacitively coupled to a Cooper-pair...
We show two effects as a result of considering the second-order correction to the spectrum of a nano...
We examine a two-level system coupled to a quantum oscillator, typically representing experiments in...
We examine a two-level system coupled to a quantum oscillator, typically representing experiments in...
We show two effects as a result of considering the second-order correction to the spectrum of a nano...
This thesis studies and finds correspondences between the steady state and entanglement present in t...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
We consider the dynamics of a nano-mechanical resonator coupled to a Cooper-pair box . We show that ...
AbstractWe investigate the quantum entropy, its power spectrum, and the excitation inversion of a Co...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.82.132501.We ...
Funding support from the National Science Foundation and the Leverhulme Trust is acknowledged.The fa...
Funding support from the National Science Foundation and the Leverhulme Trust is acknowledged.The fa...
We consider a quantum model of a nanomechanical flexing beam resonator interacting with a bath compr...
We analyze the quantum dynamics of a micromechanical resonator capacitively coupled to a Cooper-pair...
We analyze the quantum dynamics of a micromechanical resonator capacitively coupled to a Cooper-pair...
We show two effects as a result of considering the second-order correction to the spectrum of a nano...
We examine a two-level system coupled to a quantum oscillator, typically representing experiments in...
We examine a two-level system coupled to a quantum oscillator, typically representing experiments in...
We show two effects as a result of considering the second-order correction to the spectrum of a nano...
This thesis studies and finds correspondences between the steady state and entanglement present in t...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
We consider the dynamics of a nano-mechanical resonator coupled to a Cooper-pair box . We show that ...
AbstractWe investigate the quantum entropy, its power spectrum, and the excitation inversion of a Co...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.82.132501.We ...