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Journal Articles

High-energy spin fluctuation in low-T$$_{c}$$ iron-based superconductor LaFePO$$_{0.9}$$

Ishikado, Motoyuki*; Shamoto, Shinichi; Kodama, Katsuaki; Kajimoto, Ryoichi; Nakamura, Mitsutaka; Hong, T.*; Mutka, H.*

Scientific Reports (Internet), 8, p.16343_1 - 16343_6, 2018/11

 Times Cited Count:3 Percentile:29(Multidisciplinary Sciences)

Spin fluctuations are widely believed to play an important role as one of the most possible mechanisms for unconventional high-temperature superconductors. Here, the spin fluctuation in LaFePO$$_{0.9}$$ is found at high energies such as 30-50 meV with comparable intensity to an optimally doped LaFeAs(O,F).

Oral presentation

Anionic electron-induced magnetism in a two dimensional electride Y$$_{2}$$C

Tamatsukuri, Hiromu; Murakami, Yoichi*; Kuramoto, Yoshio*; Sagayama, Hajime*; Matsuura, Masato*; Kawakita, Yukinobu; Matsuishi, Satoru*; Washio, Yasuhito*; Inoshita, Takeshi*; Hamada, Noriaki*; et al.

no journal, , 

no abstracts in English

Oral presentation

Three-dimensional electronic structure and multiple superconducting gaps of Ba$$_{0.75}$$K$$_{0.25}$$Fe$$_{2}$$As$$_{2}$$ as seen via time-of-flight neutron spectroscopy

Kajimoto, Ryoichi; Kofu, Maiko; Kawamura, Seiko; Suzuki, Katsuhiro*; Nakajima, Masamichi*; Murai, Naoki

no journal, , 

The spin dynamics of iron-based superconductors is believed to play an essential role in the pairing mechanism, but realistic modeling of magnetic neutron scattering spectra in these materials remains challenging owing to their complex multi-band structure. Here we report the results of inelastic neutron scattering measurements of Ba$$_{0.75}$$K$$_{0.25}$$Fe$$_{2}$$As$$_{2}$$ that provide a benchmark of an ab-initio approach of the dynamical spin susceptibility. Our main results are two-fold. First, the magnetic neutron scattering response exhibits periodic intensity modulation along the out-of-plane direction. The observed periodicity corresponds to the out-of-plane warping of Fermi surfaces, revealing the importance of nesting in three-dimensional momentum space. Second, our careful measurements reveal the existence of the theoretically predicted multiple resonant modes that result from the multiple superconducting gaps. The agreement between theory and experiment in the present work highlights the potential of neutron spectroscopy to investigate the complex multi-band structure of iron-based superconductors.

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