AbstractThe Compact Pulsed Hadron Source (CPHS) at Tsinghua University will produce neutrons by bombarding a 13-MeV proton beam from a LINAC system on a beryllium target. One of the purposes of this neutron source is to provide the neutron facilities for characterization of advanced materials with an emphasis on soft matter and biological systems, for which high cold-neutron fluxes are essential. The design and optimization of the solid-methane moderator system aim at the enhancement of cold neutron production. This paper describes the moderator configuration, the associated gas-handling and cryogenic apparatus, and the operation procedure
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
Compact Accelerator-driven Neutron Sources (CANS) have the advantage (compared to researchreactors o...
AbstractThe Compact Pulsed Hadron Source (CPHS), currently under construction at Tsinghua University...
AbstractThe Compact Pulsed Hadron Source (CPHS) at Tsinghua University will produce neutrons by bomb...
AbstractLiquid hydrogen, ice and solid methane are common neutron moderating materials. More recentl...
Long-wavelength neutrons for the investigation of nano-scale materials are an indispensable tool in ...
During the last year two cryogenic moderators for the Jülich High Brilliance Neutron Source (HBS) pr...
Intense beams of cold neutrons are produced at several DOE facilities and are used by researchers to...
The Jülich High Brilliance Neutron Source (J-HBS) will provide neutrons to differentinstruments by u...
For brilliance-optimized compact accelerator driven neutron sources the gain factor provided by an o...
The Intense Pulsed Neutron Source (IPNS) started using solid methane moderators in 1985 because of t...
The scientific and technical advances continue to support novel discoveries by allowing scientists t...
During the past. decades, large-scale national neutron sources have been developed in Asia, Europe, ...
The Compact Pulsed Hadron Source (CPHS) project that was launched in September 2009 at Tsinghua Uni...
As part of the work for the target station of the planned European Spallation Source (ESS) the Centr...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
Compact Accelerator-driven Neutron Sources (CANS) have the advantage (compared to researchreactors o...
AbstractThe Compact Pulsed Hadron Source (CPHS), currently under construction at Tsinghua University...
AbstractThe Compact Pulsed Hadron Source (CPHS) at Tsinghua University will produce neutrons by bomb...
AbstractLiquid hydrogen, ice and solid methane are common neutron moderating materials. More recentl...
Long-wavelength neutrons for the investigation of nano-scale materials are an indispensable tool in ...
During the last year two cryogenic moderators for the Jülich High Brilliance Neutron Source (HBS) pr...
Intense beams of cold neutrons are produced at several DOE facilities and are used by researchers to...
The Jülich High Brilliance Neutron Source (J-HBS) will provide neutrons to differentinstruments by u...
For brilliance-optimized compact accelerator driven neutron sources the gain factor provided by an o...
The Intense Pulsed Neutron Source (IPNS) started using solid methane moderators in 1985 because of t...
The scientific and technical advances continue to support novel discoveries by allowing scientists t...
During the past. decades, large-scale national neutron sources have been developed in Asia, Europe, ...
The Compact Pulsed Hadron Source (CPHS) project that was launched in September 2009 at Tsinghua Uni...
As part of the work for the target station of the planned European Spallation Source (ESS) the Centr...
We propose a new method for production of ultracold neutrons (UCNs) in superfluid helium. The princi...
Compact Accelerator-driven Neutron Sources (CANS) have the advantage (compared to researchreactors o...
AbstractThe Compact Pulsed Hadron Source (CPHS), currently under construction at Tsinghua University...