Owing to its hardness and chemical inertness, most of the previous studies to fabricate structures and devices on diamond have used the conventional Reactive Ion Etching (RIE). Recently, etching of diamond using Inductively Coupled Plasma (ICP) system was reported to have a higher etch rate than using RIE. In this work, ICP etching with Ar/O 2 plasma has been employed to fabricate micro-optics on both natural diamond and high-pressure, high-temperature (HPHT) synthetic diamond. The diamond etch rate has been studied as a function of ICP platen power, coil power and gas pressure. The etch rate is shown to increase with increasing ICP platen and coil powers. Arrays of negative (concave) and positive (convex) diamond microlenses with diameters...
This paper is about etching and micro-optics fabrication in diamond using chlorine inductively-coupl...
[[abstract]]Diamond is one of the most important engineering materials for its extreme hardness, hig...
Diamond is a highly desirable material for use in x-ray optics and instrumentation. However, due to ...
Owing to its hardness and chemical inertness, most of the previous studies to fabricate structures a...
Advantageous properties including optical transparency, high thermal conductivity, and high carrier ...
The effect of Inductively-Coupled Plasma (ICP) etching on diamond using chlorine-based plasma has be...
Refractive microlenses with diameters of between a few micrometers to a few hundred micrometers have...
Double-sided micro-lenses have been successfully fabricated on natural diamond substrates using phot...
Micro-cylindrical and micro-ring lenses have been fabricated on chemical vapour deposition (CVD) dia...
Diamond photonic devices are critical components for applications including diamond based optics, di...
Diamond is a material with many exceptional properties. In this thesis methods for fabrication of mi...
Submicron lenses and cylinders exhibiting excellent properties in photodetector and quantum applicat...
Using the method of photoresist reflow and inductively coupled plasma dry etching, we have fabricate...
Infrared optics is a broad general term, relevant to a range of fields. The manufactured diamond opt...
This paper is about etching and micro-optics fabrication in diamond using chlorine inductively-coupl...
[[abstract]]Diamond is one of the most important engineering materials for its extreme hardness, hig...
Diamond is a highly desirable material for use in x-ray optics and instrumentation. However, due to ...
Owing to its hardness and chemical inertness, most of the previous studies to fabricate structures a...
Advantageous properties including optical transparency, high thermal conductivity, and high carrier ...
The effect of Inductively-Coupled Plasma (ICP) etching on diamond using chlorine-based plasma has be...
Refractive microlenses with diameters of between a few micrometers to a few hundred micrometers have...
Double-sided micro-lenses have been successfully fabricated on natural diamond substrates using phot...
Micro-cylindrical and micro-ring lenses have been fabricated on chemical vapour deposition (CVD) dia...
Diamond photonic devices are critical components for applications including diamond based optics, di...
Diamond is a material with many exceptional properties. In this thesis methods for fabrication of mi...
Submicron lenses and cylinders exhibiting excellent properties in photodetector and quantum applicat...
Using the method of photoresist reflow and inductively coupled plasma dry etching, we have fabricate...
Infrared optics is a broad general term, relevant to a range of fields. The manufactured diamond opt...
This paper is about etching and micro-optics fabrication in diamond using chlorine inductively-coupl...
[[abstract]]Diamond is one of the most important engineering materials for its extreme hardness, hig...
Diamond is a highly desirable material for use in x-ray optics and instrumentation. However, due to ...