Light field prints displaying 3D information often appear pixelated due to limited resolution and misalignment between lenses and colour pixels. Here, the authors present a one-step process via two-photon polymerization lithography to fabricate light field prints with high spatial and angular resolution
Additive manufacturing using 2 photon polymerization is of great interest as it can create nanostruc...
Direct laser writing based on photoinhibited polymerization has met great challenges to produce thre...
From the creation of the first laser in 1960, light amplification has allowed a wide range of new ma...
The rapid development of additive manufacturing has fueled a revolution in various research fields a...
The rapid development of additive manufacturing has fueled a revolution in various research fields a...
Compared with conventional microfabrication techniques, two-photon polymerization has attracted sign...
Over the past few decades, there has been an increasing interest in the fabrication of complex high-...
Compared with conventional microfabrication techniques, two-photon polymerization has attracted sign...
Compared with conventional microfabrication techniques, two-photon polymerization has attracted sign...
Lithography, universally considered to be the backbone of nanotechnology, has been consistently unde...
In this paper we present our recent progress on far-field super-resolution enabled nanofabrication i...
In this paper we present our recent progress on far-field super-resolution enabled nanofabrication i...
Functional microdevices such as micro-robotics, tissue engineering scaffolds, and lab-on-a-chip are ...
Functional microdevices such as micro-robotics, tissue engineering scaffolds, and lab-on-a-chip are ...
3D printing presents the ability of rapid prototyping and rapid manufacturing. Techniques such as st...
Additive manufacturing using 2 photon polymerization is of great interest as it can create nanostruc...
Direct laser writing based on photoinhibited polymerization has met great challenges to produce thre...
From the creation of the first laser in 1960, light amplification has allowed a wide range of new ma...
The rapid development of additive manufacturing has fueled a revolution in various research fields a...
The rapid development of additive manufacturing has fueled a revolution in various research fields a...
Compared with conventional microfabrication techniques, two-photon polymerization has attracted sign...
Over the past few decades, there has been an increasing interest in the fabrication of complex high-...
Compared with conventional microfabrication techniques, two-photon polymerization has attracted sign...
Compared with conventional microfabrication techniques, two-photon polymerization has attracted sign...
Lithography, universally considered to be the backbone of nanotechnology, has been consistently unde...
In this paper we present our recent progress on far-field super-resolution enabled nanofabrication i...
In this paper we present our recent progress on far-field super-resolution enabled nanofabrication i...
Functional microdevices such as micro-robotics, tissue engineering scaffolds, and lab-on-a-chip are ...
Functional microdevices such as micro-robotics, tissue engineering scaffolds, and lab-on-a-chip are ...
3D printing presents the ability of rapid prototyping and rapid manufacturing. Techniques such as st...
Additive manufacturing using 2 photon polymerization is of great interest as it can create nanostruc...
Direct laser writing based on photoinhibited polymerization has met great challenges to produce thre...
From the creation of the first laser in 1960, light amplification has allowed a wide range of new ma...