We present an experimental realization of a biased optical periodic potential in the low friction limit. The noise-induced bistability between locked (torsional) and running (spinning) states in the rotational motion of a nanodumbbell is driven by an elliptically polarized light beam tilting the angular potential. By varying the gas pressure around the point of maximum intermittency, the rotational effective diffusion coefficient increases by more than 3 orders of magnitude over freespace diffusion. These experimental results are in agreement with a simple two-state model that is derived from the Langevin equation through using timescale separation. Our work provides a new experimental platform to study the weak thermal noise limit for diff...
Granular particles exhibit rich collective behaviors on vibration beds, but the motion of an isolate...
The experimentally known fact that coaxial carbon nanotubes can be forced to slide one inside the ot...
Controlling the position and movement of small objects with light is an appealing way to manipulate ...
We present an experimental realization of a biased optical periodic potential in the low friction li...
We present an experimental realization of a biased optical periodic potential in the low friction li...
We investigate the diffusion of a colloidal particle in a tilted periodic potential created by means...
Evstigneev M, Zvyagolskaya O, Bleil S, Eichhorn R, Bechinger C, Reimann P. Diffusion of colloidal pa...
Developing molecular systems with functions analogous to those of macroscopic machine components, su...
It has long been recognized that the diffusion of adsorbed molecules and clusters is the key control...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
Reimann P, Van den Broeck C, Linke H, Hänggi P, Rubi JM, Perez-Madrid A. Giant acceleration of free ...
International audienceWe report on experiments addressing the non-linear interaction between a nano-...
We study nanomechanical resonators with frequency fluctuations due to diffusion of absorbed particle...
Nanofluids representing nanometer-sized solid particles dispersed in liquids are of interest in many...
Optical tweezers are high-resolution position and force transducers widely used in physics, material...
Granular particles exhibit rich collective behaviors on vibration beds, but the motion of an isolate...
The experimentally known fact that coaxial carbon nanotubes can be forced to slide one inside the ot...
Controlling the position and movement of small objects with light is an appealing way to manipulate ...
We present an experimental realization of a biased optical periodic potential in the low friction li...
We present an experimental realization of a biased optical periodic potential in the low friction li...
We investigate the diffusion of a colloidal particle in a tilted periodic potential created by means...
Evstigneev M, Zvyagolskaya O, Bleil S, Eichhorn R, Bechinger C, Reimann P. Diffusion of colloidal pa...
Developing molecular systems with functions analogous to those of macroscopic machine components, su...
It has long been recognized that the diffusion of adsorbed molecules and clusters is the key control...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
Reimann P, Van den Broeck C, Linke H, Hänggi P, Rubi JM, Perez-Madrid A. Giant acceleration of free ...
International audienceWe report on experiments addressing the non-linear interaction between a nano-...
We study nanomechanical resonators with frequency fluctuations due to diffusion of absorbed particle...
Nanofluids representing nanometer-sized solid particles dispersed in liquids are of interest in many...
Optical tweezers are high-resolution position and force transducers widely used in physics, material...
Granular particles exhibit rich collective behaviors on vibration beds, but the motion of an isolate...
The experimentally known fact that coaxial carbon nanotubes can be forced to slide one inside the ot...
Controlling the position and movement of small objects with light is an appealing way to manipulate ...