A new 973 project was proposed by Peking University and Institute of Modern Physics of Chinese Academy of Sciences recently. The project requires a 50 mA, 162.5 MHz, cw mode radio frequency quadrupole (RFQ) to accelerate the D~+ to 1 MeV. In a high-current linear accelerator, the strong space charge effect causes the growth of envelope and emittance along with heavy beam losses. In the beam dynamics design of this RFQ, beam envelope mismatching is discussed and a matching dynamics method is proposed to minimize the envelope and emittance growth. The influence of limiting current on the beam transmission is discussed and used in the optimization of transverse and longitudinal parameters. After the optimization, the beam transmission efficien...
An RFQ, which will be operated at 352 MHz frequency and 6% duty factor and will accelerate 50 mA pro...
Bunching and capture of a monochromatic beam into an rf bucket inevitably lead to substantial emitta...
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...
The dynamics design of radio frequency quadruple (RFQ) Linacs for high intensity beams had been exte...
Beam dynamics and rf designs of a 104 MHz ladder type IH-RFQ (L-IH-RFQ) accelerator are finished at ...
We have performed the beam-dynamics design of an H^{-} radio frequency quadrupole (RFQ) for the beam...
A study of the beam dynamics in the Radio Frequency Quadrupole (RFQ) proposed by Kapchinskiil and Ta...
To meet the requirements of providing high-intensity heavy ion beams the direct plasma injection sch...
As the beam envelope mismatch is the major source of the halo formation and the related emittance gr...
As the beam envelope mismatch is the major source of the halo formation and the related emittance gr...
A new design method-Matched and equipartitioned (EP) design method-has been proposed for radio frequ...
A high current Radio Frequency Quadrupole (RFQ) accelerator. was designed to produce neutrons by acc...
Beam dynamics and RF design have been performed of a new type trapezoidal IH-RFQ operating at 104 MH...
In this paper, we present conceptual design and beam dynamics analysis of the Low Energy Beam Transp...
An RFQ, which will be operated at 352 MHz frequency and 6% duty factor and will accelerate 50 mA pro...
Bunching and capture of a monochromatic beam into an rf bucket inevitably lead to substantial emitta...
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...
The dynamics design of radio frequency quadruple (RFQ) Linacs for high intensity beams had been exte...
Beam dynamics and rf designs of a 104 MHz ladder type IH-RFQ (L-IH-RFQ) accelerator are finished at ...
We have performed the beam-dynamics design of an H^{-} radio frequency quadrupole (RFQ) for the beam...
A study of the beam dynamics in the Radio Frequency Quadrupole (RFQ) proposed by Kapchinskiil and Ta...
To meet the requirements of providing high-intensity heavy ion beams the direct plasma injection sch...
As the beam envelope mismatch is the major source of the halo formation and the related emittance gr...
As the beam envelope mismatch is the major source of the halo formation and the related emittance gr...
A new design method-Matched and equipartitioned (EP) design method-has been proposed for radio frequ...
A high current Radio Frequency Quadrupole (RFQ) accelerator. was designed to produce neutrons by acc...
Beam dynamics and RF design have been performed of a new type trapezoidal IH-RFQ operating at 104 MH...
In this paper, we present conceptual design and beam dynamics analysis of the Low Energy Beam Transp...
An RFQ, which will be operated at 352 MHz frequency and 6% duty factor and will accelerate 50 mA pro...
Bunching and capture of a monochromatic beam into an rf bucket inevitably lead to substantial emitta...
An electrical model of the 104 MHz radio frequency quadrupole (RFQ) accelerator at Peking University...