A zone plate capable of focusing hard x-rays to less than 1 {mu}m spot size is designed and specified. This design is based on the state-of-art fabrication technology available today. This zone plate consists of Cu/Al layers sputtered alternatively on a round stainless steel core. Parameters of this zone plate are given. The focal length f is given for 8Kev x-rays and the thickness is optimized for focusing efficiency of the same x-ray energy
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
Recently, we demonstrated unprecedented sub-5 nm point focusing of hard X-rays (at 7.9 keV) based on...
Recently, we demonstrated unprecedented sub-5 nm point focusing of hard X-rays (at 7.9 keV) based on...
We are planning to develop a kinoform zone plate (ZP) for hard X-ray using a sputtered-sliced (SS) m...
We are planning to develop a kinoform zone plate (ZP) for hard X-ray using a sputtered-sliced (SS) m...
Progress on the fabrication of zone plates for hard X-rays is reported. The issue of achieving a hig...
A method to fabricate gold structures with high aspect ratio is presented. Fresnel zone plates with ...
We use Fresnel zone plates as focusing optics in hard x-ray microprobes at energies typically betwee...
We have investigated an alternative technique for fabricating zone plates that operate in the 5 to 1...
An absolute efficiency measurement technique for Fresnel zone plates using an electron impact micro-...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
Hard x-ray zone plate development has played an important role in improving x-ray microscopy through...
Soft x-ray lithography technology has been applied to fabrication of phase shifting Fresnel Zone Pla...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
Recently, we demonstrated unprecedented sub-5 nm point focusing of hard X-rays (at 7.9 keV) based on...
Recently, we demonstrated unprecedented sub-5 nm point focusing of hard X-rays (at 7.9 keV) based on...
We are planning to develop a kinoform zone plate (ZP) for hard X-ray using a sputtered-sliced (SS) m...
We are planning to develop a kinoform zone plate (ZP) for hard X-ray using a sputtered-sliced (SS) m...
Progress on the fabrication of zone plates for hard X-rays is reported. The issue of achieving a hig...
A method to fabricate gold structures with high aspect ratio is presented. Fresnel zone plates with ...
We use Fresnel zone plates as focusing optics in hard x-ray microprobes at energies typically betwee...
We have investigated an alternative technique for fabricating zone plates that operate in the 5 to 1...
An absolute efficiency measurement technique for Fresnel zone plates using an electron impact micro-...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
Hard x-ray zone plate development has played an important role in improving x-ray microscopy through...
Soft x-ray lithography technology has been applied to fabrication of phase shifting Fresnel Zone Pla...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
High resolution and high efficiency Zone Plate for X-rays in the energy range of 300 eV and 12 KeV f...
Recently, we demonstrated unprecedented sub-5 nm point focusing of hard X-rays (at 7.9 keV) based on...
Recently, we demonstrated unprecedented sub-5 nm point focusing of hard X-rays (at 7.9 keV) based on...