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Superconducting Order Parameters in Spin Space Groups: Methodology and Application
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We employ a systematic approach to construct superconducting order parameters based on the spin space group. Compared to magnetic space groups where spatial and spin rotation of elements are completely locked, the superconducting channels and the forms of basis functions in spin space groups can be different. Furthermore, we utilize the obtained basis functions to construct the Ginzburg-Landau free energy and discuss the possible superconducting ground states as well as the interplay between superconducting states and magnetic orders. By virtue of those results, we discuss the application of our theory to realistic systems. Our work provides a rigorous description of superconducting gap functions in the case of spin space group, and enables further study of the interplay between superconductivity and magnetism.
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Cited by 1 Pith paper
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Quantum transport theory for unconventional magnets: Interplay of altermagnetism and p-wave magnetism with superconductivity
A symmetry-based quantum transport theory for unconventional magnets, unified with superconductivity, yields testable predictions for spin-polarized currents, proximity-induced magnetization, and spin-galvanic effects.
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