検索対象:     
報告書番号:
※ 半角英数字
 年 ~ 
 年

Nearly linear orbital molecules on a pyrochlore lattice

Krajewska, A.*; 辻 卓也  ; 松村 大樹   ; 他15名*

Krajewska, A.*; Tsuji, Takuya; Matsumura, Daiju; 15 of others*

The interplay of spin-orbit coupling with other relevant parameters gives rise to the rich phase competition in complex ruthenates featuring octahedrally coordinated Ru$$^{4+}$$. While locally, spin-orbit coupling stabilizes a non-magnetic $$J_{rm eff}$$ = 0 state, intersite interactions resolve one of two distinct phases at low temperatures: an excitonicmagnet stabilized by the magnetic exchange of upper-lying $$J_{rm eff}$$ = 1 states or Ru$$_{2}$$ molecular orbital dimers driven by direct orbital overlap. Pyrochlore ruthenates A$$_{2}$$Ru$$_{2}$$O$$_{7}$$ (A = rare earth, Y) are candidate excitonic magnets with geometrical frustration. We synthesized In$$_{2}$$Ru$$_{2}$$O$$_{7}$$ with covalent In-O bonds. This pyrochlore ruthenate hosts alocal $$J_{rm eff}$$ = 0 state at high temperatures; however, at low temperatures, it forms a unique nonmagnetic ground state with nearly linear Ru-O-Ru molecules, in stark contrast to other A$$_{2}$$Ru$$_{2}$$O$$_{7}$$ compounds. The disproportionation of covalent In-O bonds drives Ru$$_{2}$$O molecule formation, quenching not only the local spin-orbit singlet but also geometrical frustration.

Access

:

- Accesses

InCites™

:

パーセンタイル:66.40

分野:Multidisciplinary Sciences

Altmetrics

:

[CLARIVATE ANALYTICS], [WEB OF SCIENCE], [HIGHLY CITED PAPER & CUP LOGO] and [HOT PAPER & FIRE LOGO] are trademarks of Clarivate Analytics, and/or its affiliated company or companies, and used herein by permission and/or license.