Optical tweezers have paved the way towards the manipulation of particles and living cells at the micrometer range. Its extension towards the nanometer world may create unprecedented potentialities in many areas of science. Following a letter (O. Emile, J. Emile, H. Tabuteau, EPL 129, 58001 (2020)) that reported the observation of the trapping of a single 200nm diameter fluorescent particle in a nanometric volume, we detail here our experimental findings. In particular, the trapping mechanism is shown to be based on the radiation pressure of light in one direction and on the stimulated emission of the particle in the evanescent wave of a nanometer Arago spot on a glass/liquid interface on the other directions. The trapping volume is a 200nm...
We present a detailed theoretical study of the recent proposal for selective nanomanipulation of nan...
We present a detailed theoretical study of the recent proposal for selective nanomanipulation of nan...
The precise noninvasive optical manipulation of nanometer-sized particles by evanescent fields, inst...
International audienceOptical tweezers have paved the way towards the manipulation of particles and ...
Optical trapping has offered new potentialities in the manipulation of bacteria, living cells, organ...
Laser trapping is based on the radiation pressure on a small particle in the focal region of a high ...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Optical trapping is the craft of manipulating obje...
Optical trapping is an established field for movement of micron-size objects and cells. However, tra...
In recent years, optical micromachines based on forces exerted by strongly focused beams of light ha...
The invention of the laser in 1960 opened the door for a myriad of studies on the interactions betwe...
Abstract. Optical trapping is an established field for movement of micron-size objects and cells. Ho...
doi:10.3791/4424 (2013). Optical trapping is a technique for immobilizing and manipulating small obj...
Optical trapping is a highly dexterous method of manipulating and interrogating nano- and micro-comp...
Optical trapping is a highly dexterous method of manipulating and interrogating nano- and micro-comp...
Optical trapping is a highly dexterous method of manipulating and interrogating nano- and micro-comp...
We present a detailed theoretical study of the recent proposal for selective nanomanipulation of nan...
We present a detailed theoretical study of the recent proposal for selective nanomanipulation of nan...
The precise noninvasive optical manipulation of nanometer-sized particles by evanescent fields, inst...
International audienceOptical tweezers have paved the way towards the manipulation of particles and ...
Optical trapping has offered new potentialities in the manipulation of bacteria, living cells, organ...
Laser trapping is based on the radiation pressure on a small particle in the focal region of a high ...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Optical trapping is the craft of manipulating obje...
Optical trapping is an established field for movement of micron-size objects and cells. However, tra...
In recent years, optical micromachines based on forces exerted by strongly focused beams of light ha...
The invention of the laser in 1960 opened the door for a myriad of studies on the interactions betwe...
Abstract. Optical trapping is an established field for movement of micron-size objects and cells. Ho...
doi:10.3791/4424 (2013). Optical trapping is a technique for immobilizing and manipulating small obj...
Optical trapping is a highly dexterous method of manipulating and interrogating nano- and micro-comp...
Optical trapping is a highly dexterous method of manipulating and interrogating nano- and micro-comp...
Optical trapping is a highly dexterous method of manipulating and interrogating nano- and micro-comp...
We present a detailed theoretical study of the recent proposal for selective nanomanipulation of nan...
We present a detailed theoretical study of the recent proposal for selective nanomanipulation of nan...
The precise noninvasive optical manipulation of nanometer-sized particles by evanescent fields, inst...