Over the last two decades, direct laser writing (DLW) has developed into one of the most versatile techniques for the fabrication of nanophotonic structures [1]. DLW employs an ultrafast optical pulse, which is focused tightly in a transparent photoresist. This focus locally induces non-linear absorption that initiates polymerization in the 3D volume of the resist. Continuous development has led to commercial nanofabrication systems with around 100 nm lateral resolution. Inspection of the fabrication results, however, poses a challenge: Readily available diagnostic methods such as scanning electron microscope (SEM) are limited to the exterior of the fabricated structure. A method like Focused Ion Beam (FIB) milling gives access to the inter...
Direct laser writing is an effective technique for fabrication of complex 3D polymer networks using ...
Diffusion-assisted direct laser writing (DA-DLW) by multiphoton polymerization has been recently sho...
International audienceIn this work, we demonstrate the capability to fabricate three-dimensional (3D...
The last decades were beneficial for nanofabrication techniques but validation of the increasingly c...
Direct Laser Writing (DLW) is a technique nowadays employed for the efficient fabrication of trully ...
For the structural characterization of the polystyrene (PS)-based photonic crystals (PCs), fast and ...
Over the last few decades, stereolithography has emerged as a leading additive manufacturing techniq...
The continuous development of the vast arsenal of fabrication techniques is a pivotal factor in the ...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
The development of optical fabrication tools such as direct laser writing (DLW) lithography provides...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Direct laser writing (DLW) in transparent cross-linkable materials based on the non-linear interacti...
Within recent years the phenomena of so-called nanogratings induced by tightly focussed femtosecond ...
Femtosecond laser-direct writing (FS-LDW) can functionalize the surface of diverse device components...
Direct laser writing is an effective technique for fabrication of complex 3D polymer networks using ...
Diffusion-assisted direct laser writing (DA-DLW) by multiphoton polymerization has been recently sho...
International audienceIn this work, we demonstrate the capability to fabricate three-dimensional (3D...
The last decades were beneficial for nanofabrication techniques but validation of the increasingly c...
Direct Laser Writing (DLW) is a technique nowadays employed for the efficient fabrication of trully ...
For the structural characterization of the polystyrene (PS)-based photonic crystals (PCs), fast and ...
Over the last few decades, stereolithography has emerged as a leading additive manufacturing techniq...
The continuous development of the vast arsenal of fabrication techniques is a pivotal factor in the ...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
The development of optical fabrication tools such as direct laser writing (DLW) lithography provides...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Direct laser writing (DLW) in transparent cross-linkable materials based on the non-linear interacti...
Within recent years the phenomena of so-called nanogratings induced by tightly focussed femtosecond ...
Femtosecond laser-direct writing (FS-LDW) can functionalize the surface of diverse device components...
Direct laser writing is an effective technique for fabrication of complex 3D polymer networks using ...
Diffusion-assisted direct laser writing (DA-DLW) by multiphoton polymerization has been recently sho...
International audienceIn this work, we demonstrate the capability to fabricate three-dimensional (3D...