MgB2 thick film was synthesized on the stainless steel substrate by the technique of hybrid physical-chemical vapor deposition (HPCVD), using Mg ingot and B2H6 as the raw materials. The film thickness is about 10 mum. The scanning electron microscope (SEM) images reveal that it is consisting of highly dense MgB2 crystals with the size ranging from 0.2 to 3 mum. The superconducting transition occurs at 38 K (Tc. onset) and ends at 27 K (Tc: zero), giving the transition width of 11 K. The fabricated film exhibits high ductility and remains attached to the substrate after it was bent to a curvature of about 200 mum.Materials Science, MultidisciplinaryPhysics, Condensed MatterEICPCI-S(ISTP)
We have successfully synthesized MgB2 thick films on 4H-SiC substrate by hybrid physical-chemical de...
Magnesium diboride (MgB2) is a good candidate material for superconducting RF cavities because of it...
Hybrid physical-chemical vapor deposition (HPCVD) has been the most effective technique for depositi...
The thick MgB2 films have been successfully grown on the Cu substrate by the technique of hybrid phy...
We have made a progress in fabricating MgB2 films, similar to 25 mu m, on the stainless steel substr...
A thick MgB2 film has been successfully deposited on a (001) crystalline surface of sapphire by the ...
We have successfully synthesized MgB2 thick films on 4H-SiC substrate by hybrid physical-chemical de...
Thick MgB2 films have been grown on Cu substrates by the technique of hybrid physical-chemical vapou...
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...
Very thick, 40 mum, clean, and highly textured MgB2,, film was effectively grown on an Al2O3 substra...
1 mu m thick polycrystalline MgB2 films have been grown on commercial niobium sheets using the hybri...
In this letter, we report on the structural and transport measurements of ultrathin MgB2 films grown...
We have fabricated several superconducting MgB2 thin films on stainless steel substrates by using hy...
Poly-crystalline MgB2 films have been grown on niobium substrate by using the hybrid physical-chemic...
We have successfully synthesized MgB2 thick films on 4H-SiC substrate by hybrid physical-chemical de...
Magnesium diboride (MgB2) is a good candidate material for superconducting RF cavities because of it...
Hybrid physical-chemical vapor deposition (HPCVD) has been the most effective technique for depositi...
The thick MgB2 films have been successfully grown on the Cu substrate by the technique of hybrid phy...
We have made a progress in fabricating MgB2 films, similar to 25 mu m, on the stainless steel substr...
A thick MgB2 film has been successfully deposited on a (001) crystalline surface of sapphire by the ...
We have successfully synthesized MgB2 thick films on 4H-SiC substrate by hybrid physical-chemical de...
Thick MgB2 films have been grown on Cu substrates by the technique of hybrid physical-chemical vapou...
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...
Very thick, 40 mum, clean, and highly textured MgB2,, film was effectively grown on an Al2O3 substra...
1 mu m thick polycrystalline MgB2 films have been grown on commercial niobium sheets using the hybri...
In this letter, we report on the structural and transport measurements of ultrathin MgB2 films grown...
We have fabricated several superconducting MgB2 thin films on stainless steel substrates by using hy...
Poly-crystalline MgB2 films have been grown on niobium substrate by using the hybrid physical-chemic...
We have successfully synthesized MgB2 thick films on 4H-SiC substrate by hybrid physical-chemical de...
Magnesium diboride (MgB2) is a good candidate material for superconducting RF cavities because of it...
Hybrid physical-chemical vapor deposition (HPCVD) has been the most effective technique for depositi...