TY - JOUR
T1 - Nanoscale flux pinning sites in high-Tc superconductors
AU - Koblischka, M. R.
AU - Winter, M.
AU - Hu, A.
AU - Muralidhar, M.
AU - Hartmann, U.
AU - Murakami, M.
PY - 2005
Y1 - 2005
N2 - Ideal flux pining centres in high-Tc superconductors should be of nanometre size as the coherence length, ξ, is so small. Therefore, the optimisation of high-Tc superconductor samples concerning high critical current densities and high flux pinning has to take place in the nanometre range. An important goal of the current research is to find specific preparation strategies to create such ideal flux pining sites already during the sample processing. By means of AFM and STM measurements at ambient conditions, we have investigated the topographies of various samples of YBa 2Cu3Ox (YBCO), NdBa2Cu 3Ox (NdBCO), SmBa2Cu3Ox (SmBCO), (Sm,Eu,Gd)Ba2Cu3Ox (SEG) and (Nd,Eu,Gd)Ba2Cu3Ox (NEG) high-Tc superconductors. We find that the two systems with the highest critical current densities (NEG, SEG) and hence, the strongest flux pinning, exhibit microstructures on the nanometre scale which are remarkably different from those obtained in the YBCO system. The stripe-like growth structures observed in our topography measurements may be the key for the considerable improvements concerning the critical current densities especially at high magnetic fields and elevated operating temperature (77 K).
AB - Ideal flux pining centres in high-Tc superconductors should be of nanometre size as the coherence length, ξ, is so small. Therefore, the optimisation of high-Tc superconductor samples concerning high critical current densities and high flux pinning has to take place in the nanometre range. An important goal of the current research is to find specific preparation strategies to create such ideal flux pining sites already during the sample processing. By means of AFM and STM measurements at ambient conditions, we have investigated the topographies of various samples of YBa 2Cu3Ox (YBCO), NdBa2Cu 3Ox (NdBCO), SmBa2Cu3Ox (SmBCO), (Sm,Eu,Gd)Ba2Cu3Ox (SEG) and (Nd,Eu,Gd)Ba2Cu3Ox (NEG) high-Tc superconductors. We find that the two systems with the highest critical current densities (NEG, SEG) and hence, the strongest flux pinning, exhibit microstructures on the nanometre scale which are remarkably different from those obtained in the YBCO system. The stripe-like growth structures observed in our topography measurements may be the key for the considerable improvements concerning the critical current densities especially at high magnetic fields and elevated operating temperature (77 K).
UR - http://www.scopus.com/inward/record.url?scp=27344460560&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=27344460560&partnerID=8YFLogxK
U2 - 10.1002/pssc.200460819
DO - 10.1002/pssc.200460819
M3 - Article
AN - SCOPUS:27344460560
SN - 1610-1634
VL - 2
SP - 1720
EP - 1725
JO - Physica Status Solidi C: Conferences
JF - Physica Status Solidi C: Conferences
IS - 5
ER -