Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written optical and Bragg grating waveguides that were distributed axially and radially inside a single coreless optical fiber. Efficient light coupling between the laser-written optical circuit elements and a standard single-mode fiber (SMF) was obtained for the first time by 3D laser writing of a 1×3 directional coupler to meet with the core waveguide in the fusion-spliced SMF. Simultaneous interrogation of nine Bragg gratings, distributed along three laterally offset waveguides, is presented through a single waveguide port at 1 kHz sampling rate to follow the Bragg wavelength shifts in real-time and thereby infer shape and temperature p...
A single-step fast-writing method of burst ultrafast laser modification was applied to form a mesh n...
Motivation: In modern medical procedures, flexible tools, catheters, and endoscopic devices are com...
Three-dimensional (3D) patterning inside optical fiber was shown to be a powerful tool for embedding...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-writte...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
Femtosecond laser pulses were used for the direct point-by-point inscription of waveguides into the ...
Femtosecond laser pulses are used to inscribe multiple evanescent coupling waveguides with Fiber Bra...
Fiber Bragg grating based optical shape sensing is a new and promising approach to gather position a...
Fiber Bragg gratings are inscribed around the edge of a standard single mode fiber core by femtoseco...
Point-by-point femtosecond laser processed fiber Bragg gratings are arranged around the edge of a st...
A new concept for fiber-optical 3D shape sensing applying femtosecond laser technology for highpreci...
Fiber Bragg grating (FBG) technology is well known since more than three decades. It started in 1978...
A single-step fast-writing method of burst ultrafast laser modification was applied to form a mesh n...
Motivation: In modern medical procedures, flexible tools, catheters, and endoscopic devices are com...
Three-dimensional (3D) patterning inside optical fiber was shown to be a powerful tool for embedding...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-writte...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
Femtosecond laser pulses were used for the direct point-by-point inscription of waveguides into the ...
Femtosecond laser pulses are used to inscribe multiple evanescent coupling waveguides with Fiber Bra...
Fiber Bragg grating based optical shape sensing is a new and promising approach to gather position a...
Fiber Bragg gratings are inscribed around the edge of a standard single mode fiber core by femtoseco...
Point-by-point femtosecond laser processed fiber Bragg gratings are arranged around the edge of a st...
A new concept for fiber-optical 3D shape sensing applying femtosecond laser technology for highpreci...
Fiber Bragg grating (FBG) technology is well known since more than three decades. It started in 1978...
A single-step fast-writing method of burst ultrafast laser modification was applied to form a mesh n...
Motivation: In modern medical procedures, flexible tools, catheters, and endoscopic devices are com...
Three-dimensional (3D) patterning inside optical fiber was shown to be a powerful tool for embedding...