شماره ركورد :
437618
عنوان مقاله :
خواص الكتريكي و مغناطيسي تركيب فرومغناطيس - ابررسانا Ru(Gd1/5-x Prx) Ce0/5 Sr2Cu2O10-
عنوان به زبان ديگر :
The electrical and magnetic properties of ferromagnetic-superconducting compound Ru(Gd1.5-xPrx)Ce0.5Sr2Cu2O10-6
پديد آورندگان :
-، - گردآورنده - Khajehnezhad, A
اطلاعات موجودي :
فصلنامه سال 1388
رتبه نشريه :
علمي پژوهشي
تعداد صفحه :
4
از صفحه :
77
تا صفحه :
80
كليدواژه :
آلايش Pr , خواص الكتريكي و مغناطيسي , روتنو كوپرات , دماي ابررسانايي و مغناطيسي
چكيده لاتين :
Coexistence of superconductivity and magnetic ordering or their mutually exclusive existence in solids is one of the fundamental problems of solid state physics. To determine the effect of Pr substitution for Gd on electrical and magnetic properties of RuGd1.5Ceo.5Sr2Cu2O10-6 (Ru-1222), Ru(Gd1.5-xPrx)Ce0.5Sr2Cu2O10-6 with x=0.0, 0.01, 0.03, 0.033, 0.04, 0.05, 0.06, 0.1 have been prepared by the standard solid-state reaction technique. The XRD patterns for various x have been obtained to show their phase purity. The resistivity and magnetoresistivity of samples have been measured at various temperatures and different magnetic fields up to 1.5T. Superconductivity and magnetic parameters such as superconducting transition temperature Tc and magnetic transition T^, have been obtained through resistivity curves. The sharp decrease in Tc with x in Ru(Gd1.5-xPrx)Ceo.5Sr2Cu2O10-6 shows competition between pair breaking by magnetic impurity, hole doping because of different valance of ions, difference in ionic radii and oxygen stoichiometry, which affect on superconducting transition. In Pr substitution for Gd, the small difference between Gd3+ and Pr3+,4+ ionic radii decreases the mean Ru-Ru distance, and as a result, the magnetic exchange interaction can become stronger with increasing x. Both Tc and Tirr decrease with external magnetic field
سال انتشار :
1388
عنوان نشريه :
پژوهش فيزيك ايران
عنوان نشريه :
پژوهش فيزيك ايران
اطلاعات موجودي :
فصلنامه با شماره پیاپی سال 1388
كلمات كليدي :
#تست#آزمون###امتحان
لينک به اين مدرک :
بازگشت