We present the results of from DC magnetization and penetration depth measurements of cylindrical bulk large-grain (LG) and fine-grain (FG) niobium samples used for the fabrication of superconducting radio frequency (SRF) cavities. The surface treatment consisted of electropolishing and low temperature baking as they are typically applied to SRF cavities. The magnetization data were fitted using a modified critical state model. The critical current density Jc and pinning force Fp are calculated from the magnetization data and their temperature dependence and field dependence are presented. The LG samples have lower critical current density and pinning force density compared to FG samples which implies a lower flux trapping efficiency. This ...
The improvement of the quality factor Q0 of superconducting radio-frequency (SRF) cavities at medium...
Bulk niobium is the most common material used in the fabrication of rf superconducting cavities for ...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
In recent years, large-grain/single-crystal niobium has become a viable alternative to the standard ...
In recent years, large-grain/single-crystal niobium has become a viable alternative to the standard ...
Superconducting Radio-Frequency cavities are currently made out of niobium. Niobium cavities are lim...
μSR was used to investigate the effect of sample preparation on the magnetic field penetration of hi...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
Trapped residual magnetic field during the cooldown of superconducting radio frequency (SRF) cavitie...
Trapped magnetic flux is known to be a major cause of radio frequency RF dissipation in supercond...
The thermal conductivity, DC magnetization and penetration depth of large-grain niobium hollow cylin...
Upcoming projects requiring high-Q ~650 MHz medium-to-high-${\beta}$ elliptical cavities drive a nee...
The thermal conductivity, DC magnetization and penetration depth of large-grain niobium hollow cylin...
Magnetic flux trapped in the Niobium bulk material of superconducting radio frequency (SRF) cavities...
Magnetic flux trapped in the Niobium bulk material of superconducting radio frequency (SRF) cavities...
The improvement of the quality factor Q0 of superconducting radio-frequency (SRF) cavities at medium...
Bulk niobium is the most common material used in the fabrication of rf superconducting cavities for ...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
In recent years, large-grain/single-crystal niobium has become a viable alternative to the standard ...
In recent years, large-grain/single-crystal niobium has become a viable alternative to the standard ...
Superconducting Radio-Frequency cavities are currently made out of niobium. Niobium cavities are lim...
μSR was used to investigate the effect of sample preparation on the magnetic field penetration of hi...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
Trapped residual magnetic field during the cooldown of superconducting radio frequency (SRF) cavitie...
Trapped magnetic flux is known to be a major cause of radio frequency RF dissipation in supercond...
The thermal conductivity, DC magnetization and penetration depth of large-grain niobium hollow cylin...
Upcoming projects requiring high-Q ~650 MHz medium-to-high-${\beta}$ elliptical cavities drive a nee...
The thermal conductivity, DC magnetization and penetration depth of large-grain niobium hollow cylin...
Magnetic flux trapped in the Niobium bulk material of superconducting radio frequency (SRF) cavities...
Magnetic flux trapped in the Niobium bulk material of superconducting radio frequency (SRF) cavities...
The improvement of the quality factor Q0 of superconducting radio-frequency (SRF) cavities at medium...
Bulk niobium is the most common material used in the fabrication of rf superconducting cavities for ...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...