Physical Property Characterization of Bulk MgB2 Superconductor
V.P.S. Awana, Arpita Vajpaye, Monika Mudgel, and H. Kishan (NPL, New, Delhi, India), V. Ganesan, A.M. Awasthi (IUC, Indore, India), G. L. Bhalla, (Univ. Delhi, India)

TL;DR
This study comprehensively characterizes the physical properties of bulk MgB2 superconductor, including structure, resistivity, Raman spectra, and magnetization, revealing superconducting transition at 37.2K and effects of nano-additives.
Contribution
It provides detailed experimental data on MgB2's physical properties and demonstrates how nano-SiC and nano-Diamond enhance its superconducting performance.
Findings
Superconductivity observed at 37.2K.
Thermal conductivity shows a jump at Tc, confirming superconducting transition.
Nano-additives significantly improve critical current density and irreversibility field.
Abstract
We report synthesis, structure/micro-structure, resistivity under magnetic field [R(T)H], Raman spectra, thermoelectric power S(T), thermal conductivity K(T), and magnetization of ambient pressure argon annealed polycrystalline bulk samples of MgB2, processed under identical conditions. The compound crystallizes in hexagonal structure with space group P6/mmm. Transmission electron microscopy (TEM) reveals electron micrographs showing various types of defect features along with the presence of 3-4nm thick amorphous layers forming the grain boundaries of otherwise crystalline MgB2. Raman spectra of the compound at room temperature exhibited characteristic phonon peak at 600 cm-1. Superconductivity is observed at 37.2K by magnetic susceptibility C(T), resistivity R(T), thermoelectric power S(T), and thermal conductivity K(T) measurements. The power law fitting of R(T) give rise to Debye…
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