Binding Strength and Oxygen Coordination of the Fe Sites in HighTcGdBa2Cu3O7-δ

Get Citation
Chen Zhiqian. Binding Strength and Oxygen Coordination of the Fe Sites in High T cGdBa 2Cu 3O 7-δ[J]. Chinese Physics C, 1993, 17(S3): 225-229.
Chen Zhiqian. Binding Strength and Oxygen Coordination of the Fe Sites in High T cGdBa 2Cu 3O 7-δ[J]. Chinese Physics C, 1993, 17(S3): 225-229. shu
Milestone
Received: 1992-10-04
Article Metric

Article Views(1597)
PDF Downloads(3)
Cited by(0)
Policy on re-use
To reuse of subscription content published by CPC, the users need to request permission from CPC, unless the content was published under an Open Access license which automatically permits that type of reuse.
    通讯作者:陈斌, bchen63@163.com
    • 1.

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Email This Article

    Title:
    Email:

    Binding Strength and Oxygen Coordination of the Fe Sites in HighTcGdBa2Cu3O7-δ

    • Department of Physics, Southwest China Normal University, Chongqing, Sichuan, China

      Abstract:The GklBa2(Cu1-xFex)3O7-δsystem withx=0.005-0.01 and various oxygen concentrations was investigated by57Fe-Mössbauer spectroscopy in the temperature range 20 K to 300 K. The spectra of the orthorhombic phase were analyzed with four quadrupole doublets. Three of them are attributed to substitutional Cu(l) sites and one (with the smallest quadrupole splitting) to the substitutional Cu(2) site. From an analysis of the temperature dependence of the relative site intensities, different local Debye temperatures for the Cu(l) sites were derived. Highly texturized absorbers were investigated to study the polarization dependence of the four quadrupole doublets. Measurements at the magic angle give evidence for a vibrational anisotropy (Goldanskii-Karyagin effect) of the Cu(l) sites. The Cu(l) site with the largest quadrupole splitting exhibits the lowest Debye temperature and the largest vibrational anisotropy.

        HTML

      目录

      /

        Return
        Return
          Baidu
          map