Conformity of spin fluctuations in alkali-metal iron selenide superconductors inferred from the observation of a magnetic resonant mode in K xFe 2ySe 2

41Citations
Citations of this article
14Readers
Mendeley users who have this article in their library.

Abstract

Spin excitations stemming from the metallic phase of the ferrochalcogenide superconductor K 0.77Fe 1.85Se 2 (T c=32K) were mapped out in the ab-plane by means of the time-of-flight neutron spectroscopy. We observed a magnetic resonant mode at , whose energy and in-plane shape are almost identical to those in the related compound Rb 0.8Fe 1.6Se 2. This lets us infer that there is a unique underlying electronic structure of the bulk superconducting phase K xFe 2Se 2, which is universal for all alkali-metal iron selenide superconductors and stands in contrast to the doping-tunable phase diagrams of the related iron pnictides. Furthermore, the spectral weight of the resonance on the absolute scale, normalized to the volume fraction of the superconducting phase, is several times larger than in optimally doped BaFe 2xCo xAs 2. We also found no evidence for any additional low-energy branches of spin excitations away from Q res. Our results provide new input for theoretical models of the spin dynamics in iron-based superconductors. © Copyright EPLA, 2012.

Cite

CITATION STYLE

APA

Friemel, G., Liu, W. P., Goremychkin, E. A., Liu, Y., Park, J. T., Sobolev, O., … Inosov, D. S. (2012). Conformity of spin fluctuations in alkali-metal iron selenide superconductors inferred from the observation of a magnetic resonant mode in K xFe 2ySe 2. EPL, 99(6). https://doi.org/10.1209/0295-5075/99/67004

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free