Classically coherent dynamics analogous to those of quantum two-level systems are studied in the setting of force sensing. We demonstrate quantitative control over the coupling between two orthogonal mechanical modes of a nanowire cantilever through measurement of avoided crossings as we deterministically position the nanowire inside an electric field. Furthermore, we demonstrate Rabi oscillations between the two mechanical modes in the strong-coupling regime. These results give prospects of implementing coherent two-mode control techniques for force-sensing signal enhancement
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
We demonstrate nonlinear coupling between two orthogonal flexural modes of single as-grown GaAs nano...
We demonstrate nonlinear coupling between two orthogonal flexural modes of single as-grown GaAs nano...
L'étude du couplage hybride entre les vibrations d'un résonateur mécanique et un degré de liberté qu...
L'étude du couplage hybride entre les vibrations d'un résonateur mécanique et un degré de liberté qu...
L'étude du couplage hybride entre les vibrations d'un résonateur mécanique et un degré de liberté qu...
Nanowire (NW) is one of the fundamental building blocks for nanoscale devices, and it has been frequ...
We demonstrate a scheme for amplifying nanomechanical motion based on strong parametric interactions...
Nanowires (NWs) are one of the fundamental building blocks for nanoscale devices, and have been freq...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
We demonstrate nonlinear coupling between two orthogonal flexural modes of single as-grown GaAs nano...
Self-assembled nanowire (NW) crystals can be grown into nearly defect-free nanomechanical resonators...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
We demonstrate nonlinear coupling between two orthogonal flexural modes of single as-grown GaAs nano...
We demonstrate nonlinear coupling between two orthogonal flexural modes of single as-grown GaAs nano...
L'étude du couplage hybride entre les vibrations d'un résonateur mécanique et un degré de liberté qu...
L'étude du couplage hybride entre les vibrations d'un résonateur mécanique et un degré de liberté qu...
L'étude du couplage hybride entre les vibrations d'un résonateur mécanique et un degré de liberté qu...
Nanowire (NW) is one of the fundamental building blocks for nanoscale devices, and it has been frequ...
We demonstrate a scheme for amplifying nanomechanical motion based on strong parametric interactions...
Nanowires (NWs) are one of the fundamental building blocks for nanoscale devices, and have been freq...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
We demonstrate nonlinear coupling between two orthogonal flexural modes of single as-grown GaAs nano...
Self-assembled nanowire (NW) crystals can be grown into nearly defect-free nanomechanical resonators...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...
International audienceThermal motion of nanomechanical probes directly impacts their sensitivities t...