Interfacial Sr diffusion stabilized (Ca,Sr)TaO3 thin film and its semiconducting behaviors

G Guangdong Nie (Department of Applied Physics, Chongqing University 1 , Chongqing 401331,) G Guanghui Han S Shengpu Huang (Institute for Structure and Function, Department of Physics, and Chongqing Key Laboratory for Strongly Coupled Physics, Chongqing University 4 , Chongqing 400044,) Y Yiqiao Yan (Department of Applied Physics, Chongqing University 1 , Chongqing 401331,) H Huiyin Wu (Department of Applied Physics, Chongqing University 1 , Chongqing 401331,) D Deshun Wang (Department of Applied Physics, Chongqing University 1 , Chongqing 401331,) K Kangxi Liu (Department of Applied Physics, Chongqing University 1 , Chongqing 401331,) H Hao Ding F Fangdong Tang (Department of Applied Physics, Chongqing University 1 , Chongqing 401331,) L Licong Peng D Dashuai Ma (Center of Quantum Materials and Devices, Chongqing University 2 , Chongqing 401331,) Y Young Sun (Department of Applied Physics, Chongqing University 1 , Chongqing 401331,) D Deshun Hong (Department of Applied Physics and Center of Quantum Materials and Devices Chongqing University Chongqing China)

Abstract

Perovskite-structured materials host enormous phases such as superconductivity, ferromagnetism, and ferroelectricity, which largely rely on the states of transition metal octahedra. Compared to the extensively studied 3d-orbital perovskite, heavier elements (such as Ta, W, and Ir) with 5d orbitals are of great interest due to their stronger spin–orbital coupling related physics. However, due to the difficulty in synthesis, research on 5d-element perovskite is quite limited. Here, we synthesized tantalate perovskite (Ca,Sr)TaO3 films by pulsed laser deposition. Structural characterizations indicate that the films are epitaxial to the substrates. By tuning the growth parameters such as oxygen partial pressure and growth temperatures, the carrier density can be tuned from ∼1014 to ∼1016 cm−2 while maintaining semiconducting behavior. We found that the interfacial Sr diffusion from the substrate to the film is critical for its structural stabilization. Analogous to KTaO3, our synthesis of (Ca,Sr)TaO3 perovskite films offers a new platform for the study of interfacial physics.

Article Details

Volume / Issue Vol. 128, Issue 15
Published April 13, 2026
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (13)

G

Guangdong Nie

Department of Applied Physics, Chongqing University 1 , Chongqing 401331,

G

Guanghui Han

S

Shengpu Huang

Institute for Structure and Function, Department of Physics, and Chongqing Key Laboratory for Strongly Coupled Physics, Chongqing University 4 , Chongqing 400044,

Y

Yiqiao Yan

Department of Applied Physics, Chongqing University 1 , Chongqing 401331,

H

Huiyin Wu

Department of Applied Physics, Chongqing University 1 , Chongqing 401331,

D

Deshun Wang

Department of Applied Physics, Chongqing University 1 , Chongqing 401331,

K

Kangxi Liu

Department of Applied Physics, Chongqing University 1 , Chongqing 401331,

H

Hao Ding

F

Fangdong Tang

Department of Applied Physics, Chongqing University 1 , Chongqing 401331,

L

Licong Peng

D

Dashuai Ma

Center of Quantum Materials and Devices, Chongqing University 2 , Chongqing 401331,

Y

Young Sun

Department of Applied Physics, Chongqing University 1 , Chongqing 401331,

D

Deshun Hong

Department of Applied Physics and Center of Quantum Materials and Devices Chongqing University Chongqing China