Magnesium diboride (MgB2) is a good candidate material for superconducting RF cavities because of its higher transition temperature of similar to 39 K and because of the absence of weak links between grains which prevents other high-T-c superconducting materials, such as YBCO, from being used for SRF cavities. Differently from MgB2 films fabricated on Cu or stainless steel(SS), we have fabricated MgB2 films on Mo substrate by hybrid physical-chemical vapor deposition. The films are about 0.7 mu m thick and the T-c (onset) is as high as 38 K, with a corresponding transition width of 0.9 K. The upper critical field at T = 0 K, H-C2(0), is extrapolated as 13.5 T and the critical current density at 5 K, J(C) (5 K, 0 T), is 6.5 x 10(5) A cm(-2)....
Magnesium diboride (MgB{sub 2}) has a transition temperature (T{sub c}) of {approx} 40 K, i.e., abou...
Ultrathin MgB2 superconducting films with a thickness down to 7.5 nm are epitaxially grown on (0001)...
Superconductor magnesium diboride is considered one of the viable materials to substitute bulk niobi...
We have investigated the coating of an inner surface of superconducting radio frequency cavities wit...
We have made a progress in fabricating MgB2 films, similar to 25 mu m, on the stainless steel substr...
Niobium with the transition temperature of 9 K is the usual material for TESLA superconducting accel...
The thick MgB2 films have been successfully grown on the Cu substrate by the technique of hybrid phy...
Hybrid physical-chemical vapor deposition (HPCVD) has been the most effective technique for depositi...
MgB2 thick film was synthesized on the stainless steel substrate by the technique of hybrid physical...
Arising from the superconductivity at similar to 39 K, magnesium diboride (MgB2) films have great pr...
Double-side superconducting MgB2 films have been grown on double-side polished sapphire substrates b...
In this letter, we report on the structural and transport measurements of ultrathin MgB2 films grown...
Superconducting MgB2 films have been fabricated on sapphire substrate by the method of hybrid physic...
Superconducting MgB2 thin films were fabricated on Mg substrate by using the hybrid physical-chemica...
Magnesium diboride (MgB2) has a transition temperature (Tc) of ~40 K, i.e., about 4 times higher tha...
Magnesium diboride (MgB{sub 2}) has a transition temperature (T{sub c}) of {approx} 40 K, i.e., abou...
Ultrathin MgB2 superconducting films with a thickness down to 7.5 nm are epitaxially grown on (0001)...
Superconductor magnesium diboride is considered one of the viable materials to substitute bulk niobi...
We have investigated the coating of an inner surface of superconducting radio frequency cavities wit...
We have made a progress in fabricating MgB2 films, similar to 25 mu m, on the stainless steel substr...
Niobium with the transition temperature of 9 K is the usual material for TESLA superconducting accel...
The thick MgB2 films have been successfully grown on the Cu substrate by the technique of hybrid phy...
Hybrid physical-chemical vapor deposition (HPCVD) has been the most effective technique for depositi...
MgB2 thick film was synthesized on the stainless steel substrate by the technique of hybrid physical...
Arising from the superconductivity at similar to 39 K, magnesium diboride (MgB2) films have great pr...
Double-side superconducting MgB2 films have been grown on double-side polished sapphire substrates b...
In this letter, we report on the structural and transport measurements of ultrathin MgB2 films grown...
Superconducting MgB2 films have been fabricated on sapphire substrate by the method of hybrid physic...
Superconducting MgB2 thin films were fabricated on Mg substrate by using the hybrid physical-chemica...
Magnesium diboride (MgB2) has a transition temperature (Tc) of ~40 K, i.e., about 4 times higher tha...
Magnesium diboride (MgB{sub 2}) has a transition temperature (T{sub c}) of {approx} 40 K, i.e., abou...
Ultrathin MgB2 superconducting films with a thickness down to 7.5 nm are epitaxially grown on (0001)...
Superconductor magnesium diboride is considered one of the viable materials to substitute bulk niobi...