Literature DB >> 31050473

Unconventional Charge Density Wave Order in the Pnictide Superconductor Ba(Ni_{1-x}Co_{x})_{2}As_{2}.

Sangjun Lee1, Gilberto de la Peña1, Stella X-L Sun1, Matteo Mitrano1, Yizhi Fang1, Hoyoung Jang2,3, Jun-Sik Lee2, Chris Eckberg4, Daniel Campbell4, John Collini4, Johnpierre Paglione4, F M F de Groot5, Peter Abbamonte1.   

Abstract

Ba(Ni_{1-x}Co_{x})_{2}As_{2} is a structural homologue of the pnictide high temperature superconductor, Ba(Fe_{1-x}Co_{x})_{2}As_{2}, in which the Fe atoms are replaced by Ni. Superconductivity is highly suppressed in this system, reaching a maximum T_{c}=2.3  K, compared to 24 K in its iron-based cousin, and the origin of this T_{c} suppression is not known. Using x-ray scattering, we show that Ba(Ni_{1-x}Co_{x})_{2}As_{2} exhibits a unidirectional charge density wave (CDW) at its triclinic phase transition. The CDW is incommensurate, exhibits a sizable lattice distortion, and is accompanied by the appearance of α Fermi surface pockets in photoemission [B. Zhou et al., Phys. Rev. B 83, 035110 (2011)PRBMDO1098-012110.1103/PhysRevB.83.035110], suggesting it forms by an unconventional mechanism. Co doping suppresses the CDW, paralleling the behavior of antiferromagnetism in iron-based superconductors. Our study demonstrates that pnictide superconductors can exhibit competing CDW order, which may be the origin of T_{c} suppression in this system.

Entities:  

Year:  2019        PMID: 31050473     DOI: 10.1103/PhysRevLett.122.147601

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  2 in total

1.  Sixfold enhancement of superconductivity in a tunable electronic nematic system.

Authors:  Chris Eckberg; Daniel J Campbell; Tristin Metz; John Collini; Halyna Hodovanets; Tyler Drye; Peter Zavalij; Morten H Christensen; Rafael M Fernandes; Sangjun Lee; Peter Abbamonte; Jeffrey W Lynn; Johnpierre Paglione
Journal:  Nat Phys       Date:  2020       Impact factor: 20.034

2.  An electronic nematic liquid in BaNi2As2.

Authors:  Yi Yao; Roland Willa; Tom Lacmann; Sofia-Michaela Souliou; Mehdi Frachet; Kristin Willa; Michael Merz; Frank Weber; Christoph Meingast; Rolf Heid; Amir-Abbas Haghighirad; Jörg Schmalian; Matthieu Le Tacon
Journal:  Nat Commun       Date:  2022-08-04       Impact factor: 17.694

  2 in total

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