دانلود مقاله ISI انگلیسی شماره 137211
ترجمه فارسی عنوان مقاله

ابررسانایی غیر متعارف در پنیسیت های آهن: جفت شدن ماده مغناطیسی

عنوان انگلیسی
Unconventional superconductivity in iron pnictides: Magnon mediated pairing
کد مقاله سال انتشار تعداد صفحات مقاله انگلیسی
137211 2018 8 صفحه PDF
منبع

Publisher : Elsevier - Science Direct (الزویر - ساینس دایرکت)

Journal : Physica C: Superconductivity and its Applications, Volume 545, 15 February 2018, Pages 18-25

ترجمه کلمات کلیدی
موج اسپین، مدل مسافرتی محلی ابررسانایی غیر متعارف، پنیکتهای آهن، ابررسانایی ضد فرومغناطیسی،
کلمات کلیدی انگلیسی
Spin wave; Localized-itinerant model; Unconventional superconductivity; Iron pnictides; Antiferromagnetic superconductivity;
پیش نمایش مقاله
پیش نمایش مقاله  ابررسانایی غیر متعارف در پنیسیت های آهن: جفت شدن ماده مغناطیسی

چکیده انگلیسی

We study the phenomenon of unconventional superconductivity in iron pnictides on the basis of localized-itinerant model. In this proposed model, superconductivity arises from the itinerant part of electrons, whereas antiferromagnetism arises from the localized part. The itinerant electrons move over the sea of localized electrons in antiferromagnetic alignment and interact with them resulting in excitation of magnons. We find that triplet pairing of itinerant electrons via magnons is possible in checkerboard antiferromagnetic spin configuration of the substances CaFe2As2 and BaFe2As2 in pure form for umklapp scattering with scattering wave vector Q=(1,1), in the unit of π/a where a being one orthorhombic crystal parameter, which is the nesting vector between two Fermi surfaces. The interaction potential figured out in this way, increases with the decrease in nearest neighbour (NN) exchange couplings. Under ambient pressure, with stripe antiferromagnetic spin configuration, a very small value of coupling constant is obtained which does not give rise to superconductivity. The critical temperature of superconductivity of the substances CaFe2As2 and BaFe2As2 in higher pressure checkerboard antiferromagnetic spin configuration are found to be 12.12 K and 29.95 K respectively which are in agreement with the experimental results.