A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium used for the fabrication of the nine-cell 1.3 GHz cavities for the linear collider project TESLA. Cylindrical Nb samples have been subjected to the same surface treatments that are applied to the TESLA cavities: buffered chemical polishing (BCP), electrolytic polishing (EP), low-temperature bakeout (LTB). The magnetization curves and the complex magnetic susceptibility have been measured over a wide range of temperatures and dc magnetic fields, and also for di erent frequencies of the applied ac magnetic field. The bulk superconductivity parameters such as the critical temperature Tc = 9.26 K and the upper critical field Bc2(0) = 410 mT are fou...
Point contact tunneling and low energy muon spin rotation are used to probe, on the same samples, th...
μSR was used to investigate the effect of sample preparation on the magnetic field penetration of hi...
Superconducting Radio-Frequency cavities are currently made out of niobium. Niobium cavities are lim...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
From the magnetic response of Nb-cylinders to time-varying fields the AC-conductivity, σ′−iσ′′, and ...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
A systematic study of irreversible magnetization was performed in bulk niobium after different surfa...
Surface characterization techniques including point contact tunneling (PCT) spectroscopy and Raman s...
Point contact tunneling and low energy muon spin rotation are used to probe, on the same samples, th...
μSR was used to investigate the effect of sample preparation on the magnetic field penetration of hi...
Superconducting Radio-Frequency cavities are currently made out of niobium. Niobium cavities are lim...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
A systematic study is presented on the superconductivity (sc) parameters of the ultrapure niobium us...
From the magnetic response of Nb-cylinders to time-varying fields the AC-conductivity, σ′−iσ′′, and ...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
International audienceA systematic study of irreversible magnetization was performed in bulk niobium...
A systematic study of irreversible magnetization was performed in bulk niobium after different surfa...
Surface characterization techniques including point contact tunneling (PCT) spectroscopy and Raman s...
Point contact tunneling and low energy muon spin rotation are used to probe, on the same samples, th...
μSR was used to investigate the effect of sample preparation on the magnetic field penetration of hi...
Superconducting Radio-Frequency cavities are currently made out of niobium. Niobium cavities are lim...