We present a new flexible technology to generate broadband antireflection structures for the THz frequency range on planar and curved surfaces of silicon optics. Ultrashort laser pulses are used to ablate the surface in order to form subwavelength structures. Such structures effectively provide a gradual transition of the refractive index from air to silicon. We demonstrate antireflection structures on convex silicon lenses of both photoconductive emitter and detector devices. Thus, the THz pulse amplitude can be increased by about 28% and the spectral amplitude of single frequencies up to 58% in the range from 0.1 to 1.5 THz
We report on the design, fabrication, and characterization of low-loss antireflection (AR) structure...
Subwavelength antireflective micropyramid structures, designed by rigorous coupled-wave analysis and...
Achieving an ultra-broadband range is an essential development direction in terahertz techniques; ho...
During the past three decades the growth of interest in THz electromagnetic wave band was enormous. ...
The optimal structural parameters for an antireflective structure in high resistive float zone silic...
Terahertz (THz) radiation is able to pass materials, which are opaque for the visual spectral region...
Silicon optics with broadband antireflective (AR) treatments are being developed for millimeter and ...
Silicon optics with broadband antireflective (AR) treatments are being developed for millimeter and ...
Direct laser ablation (DLA) is a mask-less technology used for the research and development of opti...
Many applications in astronomy from tens of GHz to THz frequencies, on the ground and in space, woul...
Many applications in astronomy from tens of GHz to THz frequencies, on the ground and in space, woul...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
[[abstract]]Nature routinely produces nanostructured surfaces with useful properties, such as the se...
We show that a single-layer antireflection coating on a THz source of high refractive index can subs...
Silicon microlenses are a very important tool for coupling terahertz (THz) radiation into antennas a...
We report on the design, fabrication, and characterization of low-loss antireflection (AR) structure...
Subwavelength antireflective micropyramid structures, designed by rigorous coupled-wave analysis and...
Achieving an ultra-broadband range is an essential development direction in terahertz techniques; ho...
During the past three decades the growth of interest in THz electromagnetic wave band was enormous. ...
The optimal structural parameters for an antireflective structure in high resistive float zone silic...
Terahertz (THz) radiation is able to pass materials, which are opaque for the visual spectral region...
Silicon optics with broadband antireflective (AR) treatments are being developed for millimeter and ...
Silicon optics with broadband antireflective (AR) treatments are being developed for millimeter and ...
Direct laser ablation (DLA) is a mask-less technology used for the research and development of opti...
Many applications in astronomy from tens of GHz to THz frequencies, on the ground and in space, woul...
Many applications in astronomy from tens of GHz to THz frequencies, on the ground and in space, woul...
We demonstrate a silicon-based, single-layer anti-reflection coating that suppresses the reflectivit...
[[abstract]]Nature routinely produces nanostructured surfaces with useful properties, such as the se...
We show that a single-layer antireflection coating on a THz source of high refractive index can subs...
Silicon microlenses are a very important tool for coupling terahertz (THz) radiation into antennas a...
We report on the design, fabrication, and characterization of low-loss antireflection (AR) structure...
Subwavelength antireflective micropyramid structures, designed by rigorous coupled-wave analysis and...
Achieving an ultra-broadband range is an essential development direction in terahertz techniques; ho...