Unconventional superconductors : experimental investigation by Gernot Goll

By Gernot Goll

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J. K. A. Sauls, D. Rainer: Phys. Rev. B 53(22), 15 147 (1996) 22 7. E. Volovik: JETP Lett. 58(6), 469 (1993). (Pis’ma Zh. Eksp. Teor. Fiz. 58, 457 (1993)) 22 8. C. J. Hirschfeld: Phys. Rev. Lett. 80(22), 4963 (1998) 22 9. K. Izawa, Y. Matsuda: J. Low Temp. Phys. 131(3/4), 429 (2003) 22 10. P. Thalmeier, K. Maki: Europhys. Lett. 58(1), 119 (2002) 22 11. I. J. P. J. Nicol: Phys. Rev. B 59(14), R9023 (1999) 22, 124 12. K. Maki, G. Yang, H. Won: Physica C 341-348(3), 1647 (2000) 22 13. H. Won, K. Maki: cond-mat/0004105 (2000) 22, 124 14.

Due to the local character of the µ+ probe and its uniform implantation in a sample, µSR has been utilized to check whether the coexistence of magnetism and superconductivity in the heavy-fermion superconductors appears on a microscopic scale. In the following a brief introduction to the µSR technique is given, for more details the reader is referred to textbooks or specialized reviews (see e. g. [8, 19, 20] and refs. therein). Here, only µ+ spin rotation is considered since positive muons are used much more extensively than negative muons in solid state physics research.

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