Title :
Characterization of the Field-Dependent Permittivity of Nonlinear Ferroelectric Films Using Tunable Coplanar Lines
Author :
Giere, Andre ; Scheele, Patrick ; Zheng, Yuliang ; Jakoby, Rolf
Author_Institution :
Inst. of Microwave Eng., Darmstadt Univ. of Technol.
fDate :
6/1/2007 12:00:00 AM
Abstract :
This letter demonstrates a scheme to characterize very precisely the field-dependent permittivity of nonlinear ferroelectric films using inhomogeneously tuned coplanar transmission lines. For the characterization, tunable coplanar waveguides on a screen-printed Ba0.6Sr0.4TiO3 (BST) thick film are realized and measured at radiofrequencies to determine the geometry-dependent tunability of the capacitance per unit length C´. To characterize the nonlinear tunability of the BST-thick film, these C´-values are compared with capacitance values simulated by the finite-difference time-domain method. Avoiding numerical instabilities of the iterative extraction procedure, the convergence of the extracted tunability is validated by three distinct geometries on the same BST substrate. The extracted tunability of the BST-thick film is 67% for an electric field-strength of 20V/mum. The precise knowledge of the field-dependent permittivity enables a distinct tunability optimization of frequency-agile radio frequency devices based on nonlinear ferroelectric films
Keywords :
barium compounds; coplanar transmission lines; ferroelectric thin films; finite difference time-domain analysis; permittivity; strontium compounds; titanium compounds; Ba0.6Sr0.4TiO3; field-dependent permittivity; finite-difference time-domain method; nonlinear ferroelectric films; screen-printed thick film; tunable coplanar waveguides; Binary search trees; Capacitance; Coplanar transmission lines; Coplanar waveguides; Ferroelectric films; Nonuniform electric fields; Permittivity; Radio frequency; Strontium; Thick films; Characterization; coplanar line; ferroelectric; finite-difference time-domain (FDTD); permittivity; planar; tunable;
Journal_Title :
Microwave and Wireless Components Letters, IEEE
DOI :
10.1109/LMWC.2007.897795