Spectroscopy of a driven solid-state qubit coupled to a structured environment
We study the asymptotic dynamics of a driven spin-boson system where the environment is formed by a broadened localized mode. Upon exploiting an exact mapping, an equivalent formulation of the problem in terms of a quantum two-state system (qubit) coupled to a harmonic oscillator which is itself Ohmically damped, is found. We calculate the asymptotic population difference of the two states in two complementary parameter regimes. For weak damping and low temperature, a perturbative Floquet-Born-Markovian master equation for the qubit-oscillator system can be solved. We find multi-photon resonances corresponding to transitions in the coupled quantum system and calculate their line-shape analytically. In the complementary parameter regime of strong damping and/or high temperatures, non-perturbative real-time path integral techniques yield analytic results for the resonance line shape. In both regimes, we find very good agreement with exact results obtained from a numerical real-time path-integral approach. Finally, we show for the case of strong detuning between qubit and oscillator that the width of the n-photon resonance scales with the nth Bessel function of the driving strength in the weak-damping regime. Copyright EDP Sciences/Società Italiana di Fisica/Springer-Verlag 2005
Year of publication: |
2005
|
---|---|
Authors: | Goorden, M. C. ; Thorwart, M. ; Grifoni, M. |
Published in: |
The European Physical Journal B - Condensed Matter and Complex Systems. - Springer. - Vol. 45.2005, 3, p. 405-417
|
Publisher: |
Springer |
Saved in:
Online Resource
Saved in favorites
Similar items by person
-
Phonon-induced decoherence and dissipation in donor-based charge qubits
Eckel, J., (2006)
-
Dissipation, decoherence and preparation effects in the spin-boson system
Grifoni, M., (1999)
-
The spectrum of interacting metallic carbon nanotubes: exchange effects and universality
Mayrhofer, L., (2008)
- More ...