During the past. decades, large-scale national neutron sources have been developed in Asia, Europe, and North America. Complementing such efforts, compact hadron beam complexes and neutron sources intended to serve primarily universities and industrial institutes have been proposed, and some have recently been established. Responding to the demand in China for pulsed neutron/proton-beam platforms that are dedicated to fundamental and applied research for users in multiple disciplines from materials characterization to hadron therapy and radiography to accelerator-driven sub-critical reactor systems (ADS) for nuclear waste transmutation, we have initiated the construction of a compact, yet expandable, accelerator complex-the Compact Pulsed H...
Neutron imaging has been recognized to be very useful to investigate inside of materials and product...
The Plasma and Ion Source Technology Group at the Lawrence Berkeley National Laboratory has been eng...
Lawrence Berkeley National Laboratory is currently developing a compact, sealed-accelerator-tube neu...
AbstractThe Compact Pulsed Hadron Source (CPHS), currently under construction at Tsinghua University...
This paper reports the design and construction status, technical challenges, and future perspectives...
AbstractThe Compact Pulsed Hadron Source (CPHS) system has been proposed and designed by the Departm...
The Compact Pulsed Hadron Source (CPHS) project that was launched in September 2009 at Tsinghua Uni...
AbstractThe Compact Pulsed Hadron Source (CPHS) project that was launched in September 2009 at Tsing...
The Compact Pulsed Hadron Source (CPHS) has launched at Tsinghua University to develop a neutron sou...
AbstractThe neutron imaging station based on the proton-linac-driven neutron source at CPHS, is pres...
AbstractThe paucity of neutron facilities accessible by university researchers in China has led to t...
Neutron scattering has proven to be one of the most powerful methods for the investigation of struct...
Abstract Neutrons have been used in a wide field of applications by using various neutron sources. M...
Neutron scattering has proven to be one of the most powerful methods for the investigation of struct...
AbstractThe design and construction status of the Radio Frequency Quadrupole (RFQ) accelerator for t...
Neutron imaging has been recognized to be very useful to investigate inside of materials and product...
The Plasma and Ion Source Technology Group at the Lawrence Berkeley National Laboratory has been eng...
Lawrence Berkeley National Laboratory is currently developing a compact, sealed-accelerator-tube neu...
AbstractThe Compact Pulsed Hadron Source (CPHS), currently under construction at Tsinghua University...
This paper reports the design and construction status, technical challenges, and future perspectives...
AbstractThe Compact Pulsed Hadron Source (CPHS) system has been proposed and designed by the Departm...
The Compact Pulsed Hadron Source (CPHS) project that was launched in September 2009 at Tsinghua Uni...
AbstractThe Compact Pulsed Hadron Source (CPHS) project that was launched in September 2009 at Tsing...
The Compact Pulsed Hadron Source (CPHS) has launched at Tsinghua University to develop a neutron sou...
AbstractThe neutron imaging station based on the proton-linac-driven neutron source at CPHS, is pres...
AbstractThe paucity of neutron facilities accessible by university researchers in China has led to t...
Neutron scattering has proven to be one of the most powerful methods for the investigation of struct...
Abstract Neutrons have been used in a wide field of applications by using various neutron sources. M...
Neutron scattering has proven to be one of the most powerful methods for the investigation of struct...
AbstractThe design and construction status of the Radio Frequency Quadrupole (RFQ) accelerator for t...
Neutron imaging has been recognized to be very useful to investigate inside of materials and product...
The Plasma and Ion Source Technology Group at the Lawrence Berkeley National Laboratory has been eng...
Lawrence Berkeley National Laboratory is currently developing a compact, sealed-accelerator-tube neu...