We developed a cobalt-based amorphous core as a new magnetic-alloy (MA) core for a loaded radio frequency (RF) cavity. Because of its low-quality-factor, high-permeability property, the core is suitable for constructing an untuned broadband accelerating cavity. While FINEMET FT-3M has been widely used as the core material, the permeability of our newly developed amorphous core is found to be approximately twice that of FINEMET FT-3M. This amorphous core is thus an excellent candidate for achieving a high-impedance cavity with low power consumption. Several measurements were taken in order to understand its feasibility and stability. The actual large-size cores were then manufactured for the first time for accelerator use
he 2nd International Workshop on Redent Progress in Induction Accelerators (RPIA2006
"RF cavities loaded with magnetic alloy (MA) or ferrite ring cores are used in synchrotrons and stor...
For the purpose of practical applications of the amorphous Fe_5Co_Si_B_ ribbon to high frequency mag...
We have developed a cobalt-based amorphous core as a new magnetic-alloy(MA) core for the loaded RF c...
We have developed a cobalt-based amorphous core as a new magnetic-alloy (MA) core for the loaded RF ...
We have developed a cobalt-based amorphous core as a new magnetic-alloy(MA)core for the loaded RF ca...
A compact cavity for acceleration has been developed with cobalt-based amorphous cores. This core ha...
A compact cavity for acceleration has been developed with cobalt-based amorphous cores. This core ha...
A compact cavity for acceleration has been developed with cobalt-based amorphous cores, which is a p...
A non-resonant rf cavity loaded with amorphous alloy cores has been designed and tested. The cavity ...
Magnetic cores suited for the RF cavities of JHF (Japanese Hadron Facility) synchrotrons have been s...
Toroid-shaped Fe-based soft magnetic amorphous powder cores were prepared from Fe76Si9B10P5 (at.%) a...
Improvement of high frequency magnetic properties was tried with success for Co-based amorphous ribb...
For magnetic alloy (MA) loaded rf accelerating cavity, we have developed an indirect cooling system,...
In order to realize high energy density physics and plasma physics research at HIRFL-CSR, a magnetic...
he 2nd International Workshop on Redent Progress in Induction Accelerators (RPIA2006
"RF cavities loaded with magnetic alloy (MA) or ferrite ring cores are used in synchrotrons and stor...
For the purpose of practical applications of the amorphous Fe_5Co_Si_B_ ribbon to high frequency mag...
We have developed a cobalt-based amorphous core as a new magnetic-alloy(MA) core for the loaded RF c...
We have developed a cobalt-based amorphous core as a new magnetic-alloy (MA) core for the loaded RF ...
We have developed a cobalt-based amorphous core as a new magnetic-alloy(MA)core for the loaded RF ca...
A compact cavity for acceleration has been developed with cobalt-based amorphous cores. This core ha...
A compact cavity for acceleration has been developed with cobalt-based amorphous cores. This core ha...
A compact cavity for acceleration has been developed with cobalt-based amorphous cores, which is a p...
A non-resonant rf cavity loaded with amorphous alloy cores has been designed and tested. The cavity ...
Magnetic cores suited for the RF cavities of JHF (Japanese Hadron Facility) synchrotrons have been s...
Toroid-shaped Fe-based soft magnetic amorphous powder cores were prepared from Fe76Si9B10P5 (at.%) a...
Improvement of high frequency magnetic properties was tried with success for Co-based amorphous ribb...
For magnetic alloy (MA) loaded rf accelerating cavity, we have developed an indirect cooling system,...
In order to realize high energy density physics and plasma physics research at HIRFL-CSR, a magnetic...
he 2nd International Workshop on Redent Progress in Induction Accelerators (RPIA2006
"RF cavities loaded with magnetic alloy (MA) or ferrite ring cores are used in synchrotrons and stor...
For the purpose of practical applications of the amorphous Fe_5Co_Si_B_ ribbon to high frequency mag...