Beryllium (Be) and copper (Cu) doped Be capsules are being developed for ignition on the National Ignition Facility (NIF). One approach uses bonding of machined Be parts while a second relies on sputter coating of Be onto a mandrel. Both approaches will require polishing in order to achieve the surface finish specifications required for ignition on NIF. This article describes a mechanical polishing process we have developed which achieves the needed surface finish for a Be NIF capsule. Characterization of the polished Be sphere is accomplished by a combination of AFM spheremapping, x-radiography and optical techniques
AbstractThe generation of neutrons through nuclear reactions like Be(d,n), necessary to implement Ac...
Beryllium (Be) and its alloys are one of the most important elements in mineral resources for fusion...
There is a need to understand the level of high-Z impurities in Beryllium shells prepared by sputter...
The sputtering of beryllium (Be) has been used at LLNL for nearly 30 years in the fabrication of las...
Targets for Inertial Confinement Fusion (ICF) typically consist of a hollow, spherical capsule fille...
Ablative targets for the National Ignition Campaign (NIC) have been fabricated by sputter coating sp...
The objective of our effort is to systematically study the properties of films produced under differ...
A process for vacuum brazing beryllium copper anode assemblies was required for the Plasma Electrode...
The Los Alamos ICF program has made several advances in learning what is required for ignition on NI...
Capsules with beryllium ablators have long been considered as alternatives to plastic for the Nation...
We have fabricated by sputtering and characterized a set of step-graded Cu-doped Be capsules. The ca...
Several choices exist in the design and production of capsules intended to ignite and propagate fusi...
The ability to build target platforms for National Ignition Facility (NIF) is a key feature in LANL'...
Continued advances in the design of ignition targets have stimulating new development paths for targ...
Doped beryllium is a material of considerable interest to both the ICF and the weapons communities, ...
AbstractThe generation of neutrons through nuclear reactions like Be(d,n), necessary to implement Ac...
Beryllium (Be) and its alloys are one of the most important elements in mineral resources for fusion...
There is a need to understand the level of high-Z impurities in Beryllium shells prepared by sputter...
The sputtering of beryllium (Be) has been used at LLNL for nearly 30 years in the fabrication of las...
Targets for Inertial Confinement Fusion (ICF) typically consist of a hollow, spherical capsule fille...
Ablative targets for the National Ignition Campaign (NIC) have been fabricated by sputter coating sp...
The objective of our effort is to systematically study the properties of films produced under differ...
A process for vacuum brazing beryllium copper anode assemblies was required for the Plasma Electrode...
The Los Alamos ICF program has made several advances in learning what is required for ignition on NI...
Capsules with beryllium ablators have long been considered as alternatives to plastic for the Nation...
We have fabricated by sputtering and characterized a set of step-graded Cu-doped Be capsules. The ca...
Several choices exist in the design and production of capsules intended to ignite and propagate fusi...
The ability to build target platforms for National Ignition Facility (NIF) is a key feature in LANL'...
Continued advances in the design of ignition targets have stimulating new development paths for targ...
Doped beryllium is a material of considerable interest to both the ICF and the weapons communities, ...
AbstractThe generation of neutrons through nuclear reactions like Be(d,n), necessary to implement Ac...
Beryllium (Be) and its alloys are one of the most important elements in mineral resources for fusion...
There is a need to understand the level of high-Z impurities in Beryllium shells prepared by sputter...