AbstractLiquid hydrogen, ice and solid methane are common neutron moderating materials. More recently methane hydrate and mesitylene have been proposed to improve performance of these materials.Liquid hydrogen is used in high-power spallation neutron sources since it is the only material that withstands such high power. Despite this, it is affected by radiation leading to spontaneous release of energy. It can be controlled by programmed annealings. Solid methane generally shows the highest neutron flux but, it is affected by radiation leading to formation of organic contaminants. In addition, spontaneous release of stored energy, that could damage the moderator container, was detected. Mesitylene is less affected by radiation and therefore,...
A phenomenon of spontaneous release of energy accumulated in some hydrogenous materials under fast n...
As part of the work for the target station of the planned European Spallation Source (ESS) the Centr...
The operation of modernized research reactor IBR-2M for condensed matter investigation on neutron be...
AbstractLiquid hydrogen, ice and solid methane are common neutron moderating materials. More recentl...
In this article we describe the experimental results of a methane hydrate moderator as well as as me...
The increasing interest of neutron scattering scientists in multi-spectral moderators motivated the ...
During the last year two cryogenic moderators for the Jülich High Brilliance Neutron Source (HBS) pr...
The Jülich High Brilliance Neutron Source (J-HBS) will provide neutrons to differentinstruments by u...
Intense beams of cold neutrons are produced at several DOE facilities and are used by researchers to...
The Intense Pulsed Neutron Source (IPNS) started using solid methane moderators in 1985 because of t...
The organic compound mesitylene has been proposed as a suitable material for cold neutron generation...
Organic aromatic cold neutron moderators - like mesitylene () - are often much more convenient to ha...
Organic aromatic cold neutron moderators - like mesitylene () - are often much more convenient to ha...
Organic aromatic cold neutron moderators - like mesitylene () - are often much more convenient to ha...
The organic compound mesitylene combines an easy handling and a high hydrogen density. These propert...
A phenomenon of spontaneous release of energy accumulated in some hydrogenous materials under fast n...
As part of the work for the target station of the planned European Spallation Source (ESS) the Centr...
The operation of modernized research reactor IBR-2M for condensed matter investigation on neutron be...
AbstractLiquid hydrogen, ice and solid methane are common neutron moderating materials. More recentl...
In this article we describe the experimental results of a methane hydrate moderator as well as as me...
The increasing interest of neutron scattering scientists in multi-spectral moderators motivated the ...
During the last year two cryogenic moderators for the Jülich High Brilliance Neutron Source (HBS) pr...
The Jülich High Brilliance Neutron Source (J-HBS) will provide neutrons to differentinstruments by u...
Intense beams of cold neutrons are produced at several DOE facilities and are used by researchers to...
The Intense Pulsed Neutron Source (IPNS) started using solid methane moderators in 1985 because of t...
The organic compound mesitylene has been proposed as a suitable material for cold neutron generation...
Organic aromatic cold neutron moderators - like mesitylene () - are often much more convenient to ha...
Organic aromatic cold neutron moderators - like mesitylene () - are often much more convenient to ha...
Organic aromatic cold neutron moderators - like mesitylene () - are often much more convenient to ha...
The organic compound mesitylene combines an easy handling and a high hydrogen density. These propert...
A phenomenon of spontaneous release of energy accumulated in some hydrogenous materials under fast n...
As part of the work for the target station of the planned European Spallation Source (ESS) the Centr...
The operation of modernized research reactor IBR-2M for condensed matter investigation on neutron be...