August 2026

Journal

Non-classical ion-indiffusion processes in quasi-one-dimensional ionic conductor KTiOPO4

By:
Barrett, Laura T; Lee, Cherrie S; Vasudevan, Rama K; Ievlev, Anton ; Canalias Gomez, Carlota
Journal Name:
APL Materials
Page Number:
41108
Volume:
14
Issue Number:
4
Publication Date:
August 14, 2026
View DOI Listing:
https://doi.org/10.1063/5.0317548

Abstract

Developments in coercive field engineering and waveguide writing via ion-exchange in the ferroelectric ionic-conductor KTiOPO4 (KTP) have led to breakthroughs within the field of nonlinear optics and quantum photonics. However, the microscopic diffusion dynamics of ion-exchange in KTP are poorly understood and show signs of non-classical diffusion dynamics. The precise control of ion-exchange gradients is critical for developing KTP into a mature, integrated nonlinear optical material but requires a level of control that, in turn, demands a deeper understanding of the ion-exchange process. We employ direct ToF-SIMS mapping to untangle the complex diffusion dynamics of the commonly used ion-exchange dopant ions: Rb, Ba, and K. We map periodic diffusion gradients of two exchanges, one dominated by Rb-ions and the other by Ba-ions. For the first time, we show the interdependent nature of the Ba- and Rb ion in the ion-exchange diffusion gradient. The low incorporation of the Ba ion is mapped and quantified, and dopant–crystal interactions are identified. This work highlights the complex diffusion dynamics of dopants in the KTP structure and lays the foundation for deterministic control of diffusion gradients for the next generation of integrated nonlinear and quantum photonic devices.