Magnetic phase separation in double layer ruthenates Ca3(Ru1−xTix)2O7

被引:0
|
作者
Jin Peng
J. Y. Liu
J. Hu
Z. Q. Mao
F. M. Zhang
X. S. Wu
机构
[1] Collaborative Innovation Center of Advanced Microstructures,Department of Physics and Engineering Physics
[2] Lab of Solid State Microstructures,undefined
[3] School of Physics,undefined
[4] Nanjing University,undefined
[5] Tulane University,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
A phase transition from metallic AFM-b antiferromagnetic state to Mott insulating G-type antiferromagnetic (G-AFM) state was found in Ca3(Ru1−xTix)2O7 at about x = 0.03 in our previous work. In the present, we focused on the study of the magnetic transition near the critical composition through detailed magnetization measurements. There is no intermediate magnetic phases between the AFM-b and G-AFM states, which is in contrasted to manganites where a similar magnetic phase transition takes place through the presence of several intermediate magnetic phases. The AFM-b-to-G-AFM transition in Ca3(Ru1−xTix)2O7 happens through a phase separation process in the 2–5% Ti range, whereas similar magnetic transitions in manganites are tuned by 50–70% chemical substitutions. We discussed the possible origin of such an unusual magnetic transition and compared with that in manganites.
引用
收藏
相关论文
共 50 条
  • [1] Magnetic phase separation in double layer ruthenates Ca3(Ru1-xTix)2O7
    Peng, Jin
    Liu, J. Y.
    Hu, J.
    Mao, Z. Q.
    Zhang, F. M.
    Wu, X. S.
    SCIENTIFIC REPORTS, 2016, 6
  • [2] Spatial inhomogeneity and the metal-insulator transition in Ca3(Ru1-xTix)2O7
    Lechermann, Frank
    Han, Qiang
    Millis, Andrew J.
    PHYSICAL REVIEW RESEARCH, 2020, 2 (03):
  • [3] RETRACTED: In Situ Control of Diamagnetism by Electric Current in Ca3(Ru1-xTix)2O7 (Retracted Article)
    Sow, Chanchal
    Numasaki, Ryo
    Mattoni, Giordano
    Yonezawa, Shingo
    Kikugawa, Naoki
    Uji, Shinya
    Maeno, Yoshiteru
    PHYSICAL REVIEW LETTERS, 2019, 122 (19)
  • [4] Comprehensive magnetic phase diagrams of the polar metal Ca3(Ru0.95Fe0.05)2O7
    Lei, Shiming
    Chikara, Shalinee
    Puggioni, Danilo
    Peng, Jin
    Zhu, Mengze
    Gu, Mingqiang
    Zhao, Weiwei
    Wang, Yu
    Yuan, Yakun
    Akamatsu, Hirofumi
    Chan, Moses H. W.
    Ke, Xianglin
    Mao, Zhiqiang
    Rondinelli, James M.
    Jaime, Marcelo
    Singleton, John
    Weickert, Franziska
    Zapf, Vivien S.
    Gopalan, Venkatraman
    PHYSICAL REVIEW B, 2019, 99 (22)
  • [5] Ca3(Ru1-xCrx)2O7: A new paradigm for spin valves
    Cao, G.
    Korneta, O.
    Chikara, S.
    DeLong, L. E.
    Schlottmann, P.
    JOURNAL OF APPLIED PHYSICS, 2010, 107 (09) : 532
  • [6] RETRACTION: In Situ Control of Diamagnetism by Electric Current in Ca3(Ru1-xTix)2O7 (Retraction of Vol 122, art no 196602, 2019)
    Sow, Chanchal
    Numasaki, Ryo
    Mattoni, Giordano
    Yonezawa, Shingo
    Kikugawa, Naoki
    Uji, Shinya
    Maeno, Yoshiteru
    PHYSICAL REVIEW LETTERS, 2020, 124 (16)
  • [7] Observation of strong spin valve effect in bulk Ca3(Ru1-xCrx)2O7
    Cao, G.
    Durairaj, V.
    Chikara, S.
    DeLong, L. E.
    Schlottmann, P.
    PHYSICAL REVIEW LETTERS, 2008, 100 (01)
  • [8] The electronic structure and optical properties of Ca3(Mn1-xTix)2O7 from first-principle calculations
    Wang, Fengqi
    Cai, Wei
    Fu, Chunlin
    Gao, Rongli
    Chen, Gang
    Deng, Xiaoling
    Wang, Zhenhua
    Zhang, Chaoyang
    JOURNAL OF ADVANCED DIELECTRICS, 2019, 9 (01)
  • [9] From quasi-two-dimensional metal with ferromagnetic bilayers to Mott insulator with G-type antiferromagnetic order in Ca3(Ru1-xTix)2O7
    Peng, Jin
    Ke, X.
    Wang, Gaochao
    Ortmann, J. E.
    Fobes, David
    Hong, Tao
    Tian, Wei
    Wu, Xiaoshan
    Mao, Z. Q.
    PHYSICAL REVIEW B, 2013, 87 (08):
  • [10] Optical spectroscopy study of Ca3(Ru0.91Mn0.09)2O7 single crystal in high magnetic fields
    Xu, Xueli
    Peng, Jin
    Zhang, Junpei
    Ma, Zongwei
    Chen, Cheng
    Han, Junbo
    Liu, Bingjie
    Lin, Lingfang
    Wu, Xiaoshan
    Mao, Zhiqiang
    Qu, Zhe
    Sheng, Zhigao
    SCIENCE BULLETIN, 2019, 64 (01) : 20 - 25