We explore the potential of 3D metal printing to realize complex conductive terahertz devices. Factors impacting performance such as printing resolution, surface roughness, oxidation, and material loss are investigated via analytical, numerical, and experimental approaches. The high degree of control offered by a 3D-printed topology is exploited to realize a zone plate operating at 530 GHz. Reflection efficiency at this frequency is found to be over 90%. The high-performance of this preliminary device suggest that 3D metal printing can play a strong role in guided-wave and general beam control devices in the terahertz range
In recent years, additive manufacturing has experienced rapid growth, due to its inherent capabiliti...
The terahertz range, which spans 0.1 to 10 THz of the electromagnetic spectrum, has significant pote...
Artificial materials are three dimensional surfaces which can manipulate, focus and filter electro-m...
3D printing of new metallised plastics is investigated as a means to realise rapid creation of refle...
Terahertz methods have developed strongly in recent years resulting in an emergence of applications ...
Terahertz time-domain spectroscopy has experienced significant progress in imaging, spectroscopy, an...
Abstract: Metal-coated polymers shaped by 3D stereolithography are introduced as a new manufacturing...
Three-dimensional-printing technologies have been receiving great attention for a wide variety of ap...
Recent years have seen an influx of applications utilizing 3D printed devices in the terahertz regim...
The terahertz gap in the electromagnetic spectrum provides promising advantages for applications suc...
The terahertz gap in the electromagnetic spectrum provides promising advantages for applications suc...
In this thesis, the possibility of manufacturing Terahertz (THz) optical components using the 3D pri...
Lithography techniques conventionally used to make artifical strucutres can only make quasi-two-dime...
We present, evaluate and discuss the viability of commercial 3D printer filaments for use in teraher...
We present, evaluate and discuss the viability of commercial 3D printer filaments for use in teraher...
In recent years, additive manufacturing has experienced rapid growth, due to its inherent capabiliti...
The terahertz range, which spans 0.1 to 10 THz of the electromagnetic spectrum, has significant pote...
Artificial materials are three dimensional surfaces which can manipulate, focus and filter electro-m...
3D printing of new metallised plastics is investigated as a means to realise rapid creation of refle...
Terahertz methods have developed strongly in recent years resulting in an emergence of applications ...
Terahertz time-domain spectroscopy has experienced significant progress in imaging, spectroscopy, an...
Abstract: Metal-coated polymers shaped by 3D stereolithography are introduced as a new manufacturing...
Three-dimensional-printing technologies have been receiving great attention for a wide variety of ap...
Recent years have seen an influx of applications utilizing 3D printed devices in the terahertz regim...
The terahertz gap in the electromagnetic spectrum provides promising advantages for applications suc...
The terahertz gap in the electromagnetic spectrum provides promising advantages for applications suc...
In this thesis, the possibility of manufacturing Terahertz (THz) optical components using the 3D pri...
Lithography techniques conventionally used to make artifical strucutres can only make quasi-two-dime...
We present, evaluate and discuss the viability of commercial 3D printer filaments for use in teraher...
We present, evaluate and discuss the viability of commercial 3D printer filaments for use in teraher...
In recent years, additive manufacturing has experienced rapid growth, due to its inherent capabiliti...
The terahertz range, which spans 0.1 to 10 THz of the electromagnetic spectrum, has significant pote...
Artificial materials are three dimensional surfaces which can manipulate, focus and filter electro-m...