Area of research
Condensed Matter Physics · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Doping, Superconductivity, Boron, Magnesium diboride, and Pinning force.
Influence of annealing temperature and isostatic pressure on microstructure and superconducting properties of isotopic Mg11B2 wires fabricated by internal Mg diffusion method
Interplay between cold densification and malic acid addition (C4H6O5) for the fabrication of near-isotropic MgB2 conductors for magnet application
Significant reduction of critical current anisotropy in malic acid treated MgB2 tapes
Evaluation of a solid nitrogen impregnated MgB <sub>2</sub> racetrack coil
Evaluation of residual stress and texture in isotope based Mg<sup>11</sup>B<sub>2</sub>superconductor using neutron diffraction
New types of high field pinning centers and pinning centers for the peak effect
Role of double doping with C and RE 2 O 3 oxides on the critical temperature and critical current of MgB 2 phase
Doping-Induced Isotopic Mg11B2 Bulk Superconductor for Fusion Application
Experimental research of high field pinning centers in 2% C doped MgB2 wires at 20 K and 25 K
Superior transport J c obtained in in-situ MgB 2 wires by tailoring the starting materials and using a combined cold high pressure densification and hot isostatic pressure treatment
Ag-doped FeSe<sub>0.94</sub>polycrystalline samples obtained through hot isostatic pressing with improved grain connectivity
Superior critical current density obtained in MgB2 bulks through low-cost carbon-encapsulated boron powder
The critical parameters in <i>in-situ</i> MgB2 wires and tapes with <i>ex-situ</i> MgB2 barrier after hot isostatic pressure, cold drawing, cold rolling and doping
Experimental research on electric field jump in low magnetic fields: Detection of damage in new ex-situ MgB2 barriers in MgB2 wires
The new resistance jump: The detection of damage in Nb barrier in MgB2 wires