The use of extremely small diameter x-ray beams at synchrotron radiation facilities has become an important experimental technique for investigators in many other scientific disciplines. While there have been several different optical elements developed for producing such microbeams, this SBIR project was concerned with one particular device: the tapered-monocapillary optic
High-performance Kirkpatrick-Baez (KB) neutron supermirror optics can nondispersively image neutrons...
The Laboratory for Micro- and Nanotechnology provides the essential technologies necessary for the d...
A commercial micro-X-ray fluorescence (MXRF) instrument with an aperture X-ray guide was used to com...
Tapered capillary optics are a promising choice for producing micro-beams at third generation source...
The motivation for this thesis is the design and implementation of novel elliptical x-ray reflective...
Capillary Optics have proven to be a valuable tool for concentrating synchrotron radiation. Single t...
The purpose of this CRADA was to develop improved glass capillary, x-ray optics for analytical x-ray...
Novel focusing optical devices have been developed for synchrotron radiation in the energy range40±1...
In this project we developed metal coated capillary optics for X-ray microfocusing. Techniques for t...
The recent invention of Kumakhov polycapillary x-ray and neutron optics has expanded the ways x-ray ...
The authors describe the theory, fabrication and experimental results of novel, compact optical elem...
A novel capillary optics technique for focusing synchrotron X-ray beams has been applied in an exper...
Capillary lens technology may ultimately bring benefits to neutron and x-ray-based science like conv...
Beamline L is dedicated to fluorescence detection from micro-focus illuminated samples. Until recent...
In this article, the geometry of the optical system, the software/hardware control system and the pr...
High-performance Kirkpatrick-Baez (KB) neutron supermirror optics can nondispersively image neutrons...
The Laboratory for Micro- and Nanotechnology provides the essential technologies necessary for the d...
A commercial micro-X-ray fluorescence (MXRF) instrument with an aperture X-ray guide was used to com...
Tapered capillary optics are a promising choice for producing micro-beams at third generation source...
The motivation for this thesis is the design and implementation of novel elliptical x-ray reflective...
Capillary Optics have proven to be a valuable tool for concentrating synchrotron radiation. Single t...
The purpose of this CRADA was to develop improved glass capillary, x-ray optics for analytical x-ray...
Novel focusing optical devices have been developed for synchrotron radiation in the energy range40±1...
In this project we developed metal coated capillary optics for X-ray microfocusing. Techniques for t...
The recent invention of Kumakhov polycapillary x-ray and neutron optics has expanded the ways x-ray ...
The authors describe the theory, fabrication and experimental results of novel, compact optical elem...
A novel capillary optics technique for focusing synchrotron X-ray beams has been applied in an exper...
Capillary lens technology may ultimately bring benefits to neutron and x-ray-based science like conv...
Beamline L is dedicated to fluorescence detection from micro-focus illuminated samples. Until recent...
In this article, the geometry of the optical system, the software/hardware control system and the pr...
High-performance Kirkpatrick-Baez (KB) neutron supermirror optics can nondispersively image neutrons...
The Laboratory for Micro- and Nanotechnology provides the essential technologies necessary for the d...
A commercial micro-X-ray fluorescence (MXRF) instrument with an aperture X-ray guide was used to com...