Pressure Induced Suppression to the Valence Change Transition in EuPdAs

Joint Authors

Li, Baoxuan
Liu, Jianzhong
Li, Yufeng
Zhu, Xiyu
Wen, Hai-Hu

Source

Advances in Condensed Matter Physics

Issue

Vol. 2015, Issue 2015 (31 Dec. 2015), pp.1-4, 4 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2015-07-21

Country of Publication

Egypt

No. of Pages

4

Main Subjects

Physics

Abstract EN

By applying a hydrostatic pressure, we have successfully suppressed the valence change transition in EuPdAs.

The studied compound EuPdAs crystallizes in a P63/mmc space group.

Through resistivity and magnetic susceptibility measurements, we find that EuPdAs shows a phase transition at 180 K and another transition below 10 K at ambient pressure, as was reported before.

The overall transport and magnetic behavior is to some extent similar to that of the parent phase of iron based superconductors.

With application of a hydrostatic pressure, the transition at 180 K is sensitively suppressed with a pressure as low as 0.48 GPa.

However, superconductivity has not been induced with pressure up to 1.90 GPa.

American Psychological Association (APA)

Li, Baoxuan& Liu, Jianzhong& Li, Yufeng& Zhu, Xiyu& Wen, Hai-Hu. 2015. Pressure Induced Suppression to the Valence Change Transition in EuPdAs. Advances in Condensed Matter Physics،Vol. 2015, no. 2015, pp.1-4.
https://search.emarefa.net/detail/BIM-1052278

Modern Language Association (MLA)

Li, Baoxuan…[et al.]. Pressure Induced Suppression to the Valence Change Transition in EuPdAs. Advances in Condensed Matter Physics No. 2015 (2015), pp.1-4.
https://search.emarefa.net/detail/BIM-1052278

American Medical Association (AMA)

Li, Baoxuan& Liu, Jianzhong& Li, Yufeng& Zhu, Xiyu& Wen, Hai-Hu. Pressure Induced Suppression to the Valence Change Transition in EuPdAs. Advances in Condensed Matter Physics. 2015. Vol. 2015, no. 2015, pp.1-4.
https://search.emarefa.net/detail/BIM-1052278

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1052278