Feedback-assisted Femtosecond Pulsed Laser Ablation of Non-Planar Metal
Surfaces: Fabrication of Optical Apertures on Tapered Fibers for Optical
Neural Interfaces
posted on 2023-11-30, 19:46authored byAntonio Balena, Marco Bianco, Filippo Pisano, Marco Pisanello, Leonardo Sileo, Bernardo Sabatini, Massimo De Vittorio, Ferruccio Pisanello
We propose a feedback-assisted direct laser writing method to perform laser ablation of fiber optics devices in which their light-collection signal is used to optimize their properties. A femtosecond-pulsed laser beam is used to ablate a metal coating deposited around a tapered optical fiber, employed to show the suitability of the approach to pattern devices with small radius of curvature. During processing, the same pulses generate two-photon fluorescence in the surrounding environment and the signal is monitored to identify different patterning regimes over time through spectral analysis. The employed fs beam mostly interacts with the metal coating, leaving almost intact the underlying silica and enabling fluorescence to couple with a specific subset of guided modes, as verified by far-field analysis. Although the method is described here for tapered optical fibers used to obtain efficient light collection in the field of optical neural interfaces, it can be easily extended to other waveguides-based devices and represents a general approach to support the implementation closed-loop laser ablation system of fiber optics.