English

Frequency Conversion: Side-band cooling, state-swapping, and coherent control of mechanical resonators

Quantum Physics 2010-07-06 v3 Mesoscale and Nanoscale Physics

Abstract

Sideband cooling is a technique that potentially allows mechanical resonators to be prepared in their ground states, important for future applications in quantum technologies. Tian has recently shown that side-band cooling can be implemented by modulating the coupling between a nano-resonator and a superconducting oscillator, a process of frequency conversion [L. Tian, PRB 79, 193407 (2009)]. While side-band cooling is usually treated in the steady-state regime, the effective resonant coupling will also generate near perfect state-swapping from the superconductor to the mechanical resonator. We perform numerical simulations of this system, examining the ground-state cooling achieved by the state-swapping. Further, we show that the superconducting oscillator can be used to control the amplitude and phase of the resonator, while simultaneously cooling it, and thus act as a coherent "quantum feedback controller".

Keywords

Cite

@article{arxiv.1003.2653,
  title  = {Frequency Conversion: Side-band cooling, state-swapping, and coherent control of mechanical resonators},
  author = {Kurt Jacobs and Hendra I. Nurdin and Frederick W. Strauch and Matthew James},
  journal= {arXiv preprint arXiv:1003.2653},
  year   = {2010}
}

Comments

revtex4-1, 4 pages, 1 png figure. v3: further results on coherent feedback control