Self-assembled nanowire (NW) crystals can be grown into nearly defect-free nanomechanical resonators with exceptional properties, including small motional mass, high resonant frequency and low dissipation. Furthermore, by virtue of slight asymmetries in geometry, a NW's flexural modes are split into doublets oscillating along orthogonal axes. These characteristics make bottom-up grown NWs extremely sensitive vectorial force sensors. Here, taking advantage of its adaptability as a scanning probe, we use a single NW to image a sample surface. By monitoring the frequency shift and direction of oscillation of both modes as we scan above the surface, we construct a map of all spatial tip–sample force derivatives in the plane. Finally, we use the...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
‘Bottom-up’ fabricated nano-resonators have emerged as particularly promising mechanical transducers...
Self-assembled nanowire (NW) crystals can be grown into nearly defect-free nanomechanical resonators...
Nanowire (NW) is one of the fundamental building blocks for nanoscale devices, and it has been frequ...
Nanowires (NWs) are one of the fundamental building blocks for nanoscale devices, and have been freq...
Nanometer-scale structures with high aspect ratios such as nanowires and nanotubes combine low mecha...
International audienceThe miniaturization of force probes into nanomechanical oscillators enables ul...
We demonstrate the use of individual magnetic nanowires (NWs), grown by focused-electron-beam-induce...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
‘Bottom-up’ fabricated nano-resonators have emerged as particularly promising mechanical transducers...
Self-assembled nanowire (NW) crystals can be grown into nearly defect-free nanomechanical resonators...
Nanowire (NW) is one of the fundamental building blocks for nanoscale devices, and it has been frequ...
Nanowires (NWs) are one of the fundamental building blocks for nanoscale devices, and have been freq...
Nanometer-scale structures with high aspect ratios such as nanowires and nanotubes combine low mecha...
International audienceThe miniaturization of force probes into nanomechanical oscillators enables ul...
We demonstrate the use of individual magnetic nanowires (NWs), grown by focused-electron-beam-induce...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
We present a scanning magnetic force sensor based on an individual magnet-tipped GaAs nanowire (NW) ...
‘Bottom-up’ fabricated nano-resonators have emerged as particularly promising mechanical transducers...