Beam dynamics and RF design have been performed of a new type trapezoidal IH-RFQ operating at 104 MHz for acceleration of C-14(+) in the framework of RFQ based C-14 AMS facility at Peking University. Low energy spread RFQ beam dynamics design was approached by the method of internal discrete bunching. C-14(+) will be accelerated from 40 keV to 500 keV with the length of about 1.1 m. The designed transmission efficiency is better than 95% and the energy spread is as low as 0.6%. Combining the beam dynamics design, a trapezoidal IH-RFQ structure was proposed, which can be cooled more easily and has better mechanical performance than traditional RFQ. Electromagnetic field distribution was simulated by using CST Microwave Studio (MWS). The spec...
A new 973 project was proposed by Peking University and Institute of Modern Physics of Chinese Acade...
Characterized by its compactness, convenience, high current and high transmission, radio frequency q...
To provide high shunt impendence with low power losses, an 81.25 MHz continuous wave (CW) radio freq...
The methodology for a low energy spread RFQ beam dynamics design has been studied for C14+ AMS appli...
Beam dynamics and rf designs of a 104 MHz ladder type IH-RFQ (L-IH-RFQ) accelerator are finished at ...
Beam dynamics design of an RFQ with low energy spread is introduced. The energy spread of the output...
The nuclear science community considers the construction of the Rare Isotope Accelerator (RIA) facil...
Beam dynamics design of an RFQ with low energy spread is introduced. The energy spread of the output...
The Rare Isotope Accelerator (RIA) facility includes a driver linac for production of 400 kW CW heav...
An electrical model of the 104 MHz radio frequency quadrupole (RFQ) accelerator at Peking University...
A new 973 project was proposed by Peking University and Institute of Modern Physics of Chinese Acade...
Separated Function Radio Frequency Quadrupole (SFRFQ) accelerator is a new structure where diaphragm...
A four-vane continuous wave (CW) RFQ has been designed for the injector II LINAC of China ADS projec...
To study feasibilities of RFQ-based ion implantation and accelerator mass spectroscopy (AMS), a 104 ...
To study feasibilities of RFQ-based ion implantation and accelerator mass spectroscopy (AMS), a 104 ...
A new 973 project was proposed by Peking University and Institute of Modern Physics of Chinese Acade...
Characterized by its compactness, convenience, high current and high transmission, radio frequency q...
To provide high shunt impendence with low power losses, an 81.25 MHz continuous wave (CW) radio freq...
The methodology for a low energy spread RFQ beam dynamics design has been studied for C14+ AMS appli...
Beam dynamics and rf designs of a 104 MHz ladder type IH-RFQ (L-IH-RFQ) accelerator are finished at ...
Beam dynamics design of an RFQ with low energy spread is introduced. The energy spread of the output...
The nuclear science community considers the construction of the Rare Isotope Accelerator (RIA) facil...
Beam dynamics design of an RFQ with low energy spread is introduced. The energy spread of the output...
The Rare Isotope Accelerator (RIA) facility includes a driver linac for production of 400 kW CW heav...
An electrical model of the 104 MHz radio frequency quadrupole (RFQ) accelerator at Peking University...
A new 973 project was proposed by Peking University and Institute of Modern Physics of Chinese Acade...
Separated Function Radio Frequency Quadrupole (SFRFQ) accelerator is a new structure where diaphragm...
A four-vane continuous wave (CW) RFQ has been designed for the injector II LINAC of China ADS projec...
To study feasibilities of RFQ-based ion implantation and accelerator mass spectroscopy (AMS), a 104 ...
To study feasibilities of RFQ-based ion implantation and accelerator mass spectroscopy (AMS), a 104 ...
A new 973 project was proposed by Peking University and Institute of Modern Physics of Chinese Acade...
Characterized by its compactness, convenience, high current and high transmission, radio frequency q...
To provide high shunt impendence with low power losses, an 81.25 MHz continuous wave (CW) radio freq...