We demonstrated diamond processing using a variable pressure scanning electron microscope. Dents were formed in diamond by electron beam irradiation in air, nitrogen gas, oxygen gas, and water vapor. The processing in oxygen atmosphere showed the highest efficiency. The processing mechanism can be explained in terms of gas ion sputtering and chemical reaction. We used this method to remove residue on a diamond device, which showed that it is practical for fabricating diamond-based nano-devices
ABSTRACT: We report the systematic studies on the fabrication of aligned, uniform, and highly dense ...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
[[abstract]]Diamond is one of the most important engineering materials for its extreme hardness, hig...
Scanning tunneling electron microscopy (STM) has recently shown great promise for surface modificati...
Using pulsed laser ablation, a novel method has been successfully developed for the generation of mi...
Includes bibliographical references (page 2748).Polycrystalline diamond films were processed in a di...
Fine-crystalline diamond particles are grown on standard Si atomic force microscopy tips, using hot ...
© 2014 IEEE. Controlled fabrication of semiconductor nanostructures is a prerequisite step in the en...
Controlled fabrication of semiconductor nanostructures is an essential step in engineering of high p...
Metals have been used in the past to grow diamond in high temperature/high pressure reactors. In our...
Nanoscale fabrication requires a substrate made from an engineering material to be truly flat so tha...
In this article, the authors present a technique for obtaining atomic resolution ultrahigh vacuum sc...
AbstractPossibility of ultra-precise laser induced ablative etching of diamond materials was investi...
Diamond is a material with many exceptional properties. In this thesis methods for fabrication of mi...
In nanoprobing experiments the tip should allow the manipulation and the probing of electrical, mech...
ABSTRACT: We report the systematic studies on the fabrication of aligned, uniform, and highly dense ...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
[[abstract]]Diamond is one of the most important engineering materials for its extreme hardness, hig...
Scanning tunneling electron microscopy (STM) has recently shown great promise for surface modificati...
Using pulsed laser ablation, a novel method has been successfully developed for the generation of mi...
Includes bibliographical references (page 2748).Polycrystalline diamond films were processed in a di...
Fine-crystalline diamond particles are grown on standard Si atomic force microscopy tips, using hot ...
© 2014 IEEE. Controlled fabrication of semiconductor nanostructures is a prerequisite step in the en...
Controlled fabrication of semiconductor nanostructures is an essential step in engineering of high p...
Metals have been used in the past to grow diamond in high temperature/high pressure reactors. In our...
Nanoscale fabrication requires a substrate made from an engineering material to be truly flat so tha...
In this article, the authors present a technique for obtaining atomic resolution ultrahigh vacuum sc...
AbstractPossibility of ultra-precise laser induced ablative etching of diamond materials was investi...
Diamond is a material with many exceptional properties. In this thesis methods for fabrication of mi...
In nanoprobing experiments the tip should allow the manipulation and the probing of electrical, mech...
ABSTRACT: We report the systematic studies on the fabrication of aligned, uniform, and highly dense ...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
[[abstract]]Diamond is one of the most important engineering materials for its extreme hardness, hig...